{"pageNumber":"50","pageRowStart":"1225","pageSize":"25","recordCount":185258,"records":[{"id":70273339,"text":"70273339 - 2025 - Mount Spurr volcano, August 18, 1992: The eruption heard around Alaska","interactions":[],"lastModifiedDate":"2026-01-09T14:23:56.559276","indexId":"70273339","displayToPublicDate":"2025-10-21T10:40:16","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1109,"text":"Bulletin of Volcanology","active":true,"publicationSubtype":{"id":10}},"title":"Mount Spurr volcano, August 18, 1992: The eruption heard around Alaska","docAbstract":"<p><span>The August 18, 1992, eruption of Mount Spurr volcano, Alaska, produced an impressive Vulcanian to Subplinian eruption column reaching up to 40&nbsp;km above sea level that blanketed the nearby city of Anchorage with ash. At the time of the eruption, the Alaska Volcano Observatory received reports of audible sound hundreds of kilometers from the source from a variety of azimuths&nbsp;from the volcano and found the pattern that did not solely depend on distance. Explosions are generally inaudible to the human ear at these distances due to the attenuation of sound in the atmosphere as the energy propagates, but low-frequency sound waves (infrasound) persist and can be used to detect and characterize eruptions. Similar reports of zones of audible sounds at great distances have been observed from notable eruptions such as Krakatau 1883, Mount St. Helens 1980, Mount Pinatubo 1991, and Hunga volcano 2022. We perform infrasound propagation modeling to help understand the unique distribution of audible reports, finding that areas with favorable infrasound propagation may help explain areas in which nonlinear propagation, including energy cascading effects into higher frequencies that are audible to the human ear, may have occurred.</span></p>","language":"English","publisher":"Springer","doi":"10.1007/s00445-025-01889-y","usgsCitation":"Iezzi, A.M., and Power, J., 2025, Mount Spurr volcano, August 18, 1992: The eruption heard around Alaska: Bulletin of Volcanology, v. 87, 103, 9 p., https://doi.org/10.1007/s00445-025-01889-y.","productDescription":"103, 9 p.","ipdsId":"IP-177278","costCenters":[{"id":617,"text":"Volcano Science Center","active":true,"usgs":true}],"links":[{"id":498388,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Alaska","otherGeospatial":"Mount Spurr","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -145.21429538275885,\n              64.29174488809704\n            ],\n            [\n              -158,\n              64.29174488809704\n            ],\n            [\n              -158,\n              59.07692390342348\n            ],\n            [\n              -145.21429538275885,\n              59.07692390342348\n            ],\n            [\n              -145.21429538275885,\n              64.29174488809704\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"87","noUsgsAuthors":false,"publicationDate":"2025-10-21","publicationStatus":"PW","contributors":{"authors":[{"text":"Iezzi, Alexandra M. 0000-0002-6782-7681","orcid":"https://orcid.org/0000-0002-6782-7681","contributorId":304206,"corporation":false,"usgs":true,"family":"Iezzi","given":"Alexandra","email":"","middleInitial":"M.","affiliations":[{"id":617,"text":"Volcano Science Center","active":true,"usgs":true}],"preferred":true,"id":953393,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Power, John 0000-0002-7233-4398","orcid":"https://orcid.org/0000-0002-7233-4398","contributorId":215240,"corporation":false,"usgs":true,"family":"Power","given":"John","affiliations":[{"id":617,"text":"Volcano Science Center","active":true,"usgs":true}],"preferred":true,"id":953394,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70272124,"text":"70272124 - 2025 - Cyanotoxin production in shallow subtropical lakes is driven by nutrient enrichment and primary producer abundance on the millennial scale","interactions":[],"lastModifiedDate":"2025-11-17T15:56:39.6263","indexId":"70272124","displayToPublicDate":"2025-10-21T08:51:56","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1878,"text":"Harmful Algae","active":true,"publicationSubtype":{"id":10}},"title":"Cyanotoxin production in shallow subtropical lakes is driven by nutrient enrichment and primary producer abundance on the millennial scale","docAbstract":"<p><span>Increased cyanotoxin concentrations from harmful algal blooms (HABs) in lake systems pose a global challenge to water quality. Although progress has been made in monitoring cyanotoxins in modern environments over recent decades, identifying the triggers of cyanotoxin release by cyanobacteria has yielded mixed results from experimental and analytical studies. Paleolimnological reconstructions can reveal whole-lake long-term changes, but few studies have directly measured cyanotoxins alongside other water quality proxies. Here, we investigated the drivers of sedimentary total microcystin (MC) concentrations on millennial scales in hypereutrophic Lakes Dora and Marian in central Florida, USA. We analyzed dated sediment records using paleolimnological techniques to reconstruct nutrient deposition, cyanobacteria abundance (photosynthetic pigments), and cyanotoxins (total MCs). The objective was to investigate the linkage between MC concentrations in the sediments with both biotic (cyanobacteria and other primary producers) and abiotic factors (nutrients and climate). We found that MC production occurred throughout the ∼7000-year period, progressing from periods of moderate to low, and then to high concentrations in both lakes. Statistical analyses showed that historical MC concentrations were correlated with sedimentary measurements of total phosphorus (TP), cyanobacteria abundance, and other primary producer groups, such as cryptophytes. However, there was only a minimal correspondence with climate proxies, such as charcoal and pollen, suggesting that internal nutrient cycling and human pressures were the dominant drivers of MC deposition. Our study demonstrates that cyanotoxins have occurred for millennia in both lakes with maintained relationships to nutrients and other environmental factors that existed both in historic and modern limnological conditions.</span></p>","language":"English","publisher":"Elsevier","doi":"10.1016/j.hal.2025.103004","usgsCitation":"Paradeisis-Stathis, S., Waters, M.N., Willard, D., Foliano, S., and Vachula, R.S., 2025, Cyanotoxin production in shallow subtropical lakes is driven by nutrient enrichment and primary producer abundance on the millennial scale: Harmful Algae, v. 151, 103004, 16 p., https://doi.org/10.1016/j.hal.2025.103004.","productDescription":"103004, 16 p.","ipdsId":"IP-181868","costCenters":[{"id":40020,"text":"Florence Bascom Geoscience Center","active":true,"usgs":true}],"links":[{"id":496548,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Florida","otherGeospatial":"Lake Dora, Lake Marian","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -82.44436943337803,\n              29.651926771236546\n            ],\n            [\n              -82.44436943337803,\n              28.25712734894958\n            ],\n            [\n              -81.14720193457273,\n              28.25712734894958\n            ],\n            [\n              -81.14720193457273,\n              29.651926771236546\n            ],\n            [\n              -82.44436943337803,\n              29.651926771236546\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"151","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Paradeisis-Stathis, Savvas","contributorId":362173,"corporation":false,"usgs":false,"family":"Paradeisis-Stathis","given":"Savvas","affiliations":[{"id":13360,"text":"Auburn University","active":true,"usgs":false}],"preferred":false,"id":950143,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Waters, Matthew N.","contributorId":362174,"corporation":false,"usgs":false,"family":"Waters","given":"Matthew","middleInitial":"N.","affiliations":[{"id":13360,"text":"Auburn University","active":true,"usgs":false}],"preferred":false,"id":950144,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Willard, Debra A. 0000-0003-4878-0942","orcid":"https://orcid.org/0000-0003-4878-0942","contributorId":269840,"corporation":false,"usgs":true,"family":"Willard","given":"Debra A.","affiliations":[],"preferred":true,"id":950145,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Foliano, Sophia","contributorId":362177,"corporation":false,"usgs":false,"family":"Foliano","given":"Sophia","affiliations":[{"id":13360,"text":"Auburn University","active":true,"usgs":false}],"preferred":false,"id":950146,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Vachula, Richard S.","contributorId":362178,"corporation":false,"usgs":false,"family":"Vachula","given":"Richard","middleInitial":"S.","affiliations":[{"id":13360,"text":"Auburn University","active":true,"usgs":false}],"preferred":false,"id":950147,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70272196,"text":"70272196 - 2025 - Toward a shared vision for climate-informed resource stewardship","interactions":[],"lastModifiedDate":"2025-12-01T16:54:29.24709","indexId":"70272196","displayToPublicDate":"2025-10-21T08:23:20","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1701,"text":"Frontiers in Ecology and the Environment","active":true,"publicationSubtype":{"id":10}},"title":"Toward a shared vision for climate-informed resource stewardship","docAbstract":"<p><span>Climate-change adaptation planning processes and tools are increasing in number and evolving rapidly. During times of innovation and proliferation, a potential danger is incoherence, when well-intended contributions can overwhelm, create confusion, or mask complementarities. A shared vision is needed to avoid duplication, reduce misunderstandings, and facilitate work across jurisdictions to steward resources undergoing profound changes. Such a vision would document fundamental tools and approaches while allowing flexibility to match highly varied management contexts and organizational missions. Fortunately, the preconditions for coherence exist. Here, we illustrate how climate-change adaptation tools—including scenario planning, conceptual frameworks, structured decision making, and impact-evaluation methods—can be (and are) used in tandem to support adaptation planning that accounts for uncertainty, considers a broad range of strategies and actions, makes transparent and robust choices, evaluates outcomes, and is flexible and responsive to the decision context.</span></p>","language":"English","publisher":"Ecological Society of America","doi":"10.1002/fee.70005","usgsCitation":"Miller, B.W., Schuurman, G.W., Carr, W., Lawrence, D.J., Thurman, L., Bamzai-Dodson, A., Brandt, L.A., Crausbay, S.D., Cross, M.E., Eaton, M.J., Janowiak, M.K., Jones-Farrand, D.T., and Reyes, J., 2025, Toward a shared vision for climate-informed resource stewardship: Frontiers in Ecology and the Environment, v. 23, no. 10, e70005, 8 p., https://doi.org/10.1002/fee.70005.","productDescription":"e70005, 8 p.","ipdsId":"IP-176778","costCenters":[{"id":40927,"text":"North Central Climate Adaptation Science Center","active":true,"usgs":true}],"links":[{"id":496635,"rank":2,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":496743,"rank":1,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1002/fee.70005","text":"Publisher Index Page"}],"volume":"23","issue":"10","noUsgsAuthors":false,"publicationDate":"2025-10-21","publicationStatus":"PW","contributors":{"authors":[{"text":"Miller, Brian W. 0000-0003-1716-1161","orcid":"https://orcid.org/0000-0003-1716-1161","contributorId":196603,"corporation":false,"usgs":true,"family":"Miller","given":"Brian","email":"","middleInitial":"W.","affiliations":[{"id":36940,"text":"National Climate Adaptation Science Center","active":true,"usgs":true}],"preferred":true,"id":950405,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Schuurman, Gregor W.","contributorId":362389,"corporation":false,"usgs":false,"family":"Schuurman","given":"Gregor","middleInitial":"W.","affiliations":[{"id":36189,"text":"National Park Service","active":true,"usgs":false}],"preferred":false,"id":950406,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Carr, Wylie","contributorId":273040,"corporation":false,"usgs":false,"family":"Carr","given":"Wylie","affiliations":[{"id":36189,"text":"National Park Service","active":true,"usgs":false}],"preferred":false,"id":950407,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Lawrence, David J.","contributorId":362390,"corporation":false,"usgs":false,"family":"Lawrence","given":"David","middleInitial":"J.","affiliations":[{"id":36189,"text":"National Park Service","active":true,"usgs":false}],"preferred":false,"id":950408,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Thurman, Lindsey 0000-0003-3142-4909","orcid":"https://orcid.org/0000-0003-3142-4909","contributorId":269425,"corporation":false,"usgs":true,"family":"Thurman","given":"Lindsey","email":"","affiliations":[{"id":481,"text":"Northern Rocky Mountain Science Center","active":true,"usgs":true}],"preferred":true,"id":950409,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Bamzai-Dodson, Aparna 0000-0002-2444-9051","orcid":"https://orcid.org/0000-0002-2444-9051","contributorId":247300,"corporation":false,"usgs":true,"family":"Bamzai-Dodson","given":"Aparna","affiliations":[{"id":40927,"text":"North Central Climate Adaptation Science Center","active":true,"usgs":true}],"preferred":true,"id":950410,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Brandt, Leslie A.","contributorId":205996,"corporation":false,"usgs":false,"family":"Brandt","given":"Leslie","email":"","middleInitial":"A.","affiliations":[{"id":37208,"text":"Northern Institute of Applied Climate Science, USDA Forest Service, Northern Research Station","active":true,"usgs":false}],"preferred":false,"id":950411,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Crausbay, Shelley D.","contributorId":362393,"corporation":false,"usgs":false,"family":"Crausbay","given":"Shelley","middleInitial":"D.","affiliations":[{"id":36493,"text":"USDA Forest Service","active":true,"usgs":false}],"preferred":false,"id":950412,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Cross, Molly Elizabeth Smith 0000-0002-4238-9208","orcid":"https://orcid.org/0000-0002-4238-9208","contributorId":333954,"corporation":false,"usgs":true,"family":"Cross","given":"Molly","email":"","middleInitial":"Elizabeth Smith","affiliations":[{"id":40927,"text":"North Central Climate Adaptation Science Center","active":true,"usgs":true}],"preferred":true,"id":950413,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Eaton, Mitchell J. 0000-0001-7324-6333","orcid":"https://orcid.org/0000-0001-7324-6333","contributorId":213526,"corporation":false,"usgs":true,"family":"Eaton","given":"Mitchell","middleInitial":"J.","affiliations":[{"id":565,"text":"Southeast Climate Science Center","active":true,"usgs":true}],"preferred":true,"id":950414,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Janowiak, Maria K.","contributorId":362396,"corporation":false,"usgs":false,"family":"Janowiak","given":"Maria","middleInitial":"K.","affiliations":[{"id":36493,"text":"USDA Forest Service","active":true,"usgs":false}],"preferred":false,"id":950415,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Jones-Farrand, D. Todd","contributorId":362397,"corporation":false,"usgs":false,"family":"Jones-Farrand","given":"D.","middleInitial":"Todd","affiliations":[{"id":6661,"text":"US Fish and Wildlife Service","active":true,"usgs":false}],"preferred":false,"id":950416,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Reyes, Julian","contributorId":296960,"corporation":false,"usgs":false,"family":"Reyes","given":"Julian","affiliations":[{"id":64254,"text":"USDA Climate Hubs","active":true,"usgs":false}],"preferred":false,"id":950417,"contributorType":{"id":1,"text":"Authors"},"rank":13}]}}
,{"id":70273250,"text":"70273250 - 2025 - Satellite assessment of winter cover crop and conservation tillage outcomes to support adaptive management in working landscapes","interactions":[],"lastModifiedDate":"2025-12-23T14:59:24.331062","indexId":"70273250","displayToPublicDate":"2025-10-21T07:44:22","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2262,"text":"Journal of Environmental Quality","active":true,"publicationSubtype":{"id":10}},"title":"Satellite assessment of winter cover crop and conservation tillage outcomes to support adaptive management in working landscapes","docAbstract":"<p><span>The use of winter cover crops and conservation tillage are agricultural practices promoted to reduce nutrient and sediment loss from cropland, improve soil health, increase infiltration, and support farm nutrient cycling and ecosystem services. However, environmental performance of these practices is variable in the working farm landscape. The Lower Chesapeake Bay research project within the USDA Long-Term Agroecosystem Research (LTAR) network has collaboratively developed satellite remote sensing algorithms to measure the performance and phenology of winter cover crops (aboveground biomass, nitrogen content, fractional cover, and emergence and termination dates) using no-cost Harmonized Landsat and Sentinel-2 multispectral satellite imagery. This research supports annual operational assessment of&nbsp;&gt;28,000 fields per year in four states. Results document the impacts of agronomic management on conservation outcomes, support adaptive management of incentive payment structures, and can reduce the workload for conservation district staff by remotely verifying cover crop management. Additionally, super-spectral satellite applications have been developed to accurately map crop residue cover by measuring lignocellulose absorption in shortwave infrared wavelengths, producing a 7-year time series of tillage intensity maps for the Delmarva Peninsula. These remote sensing products can be used in decision support and modeling to estimate changes in nutrient, sediment, and carbon cycling resulting from conservation practice implementation in the working farm landscape. This manuscript provides an overview of remote sensing research findings and applications associated with the USDA LTAR and Conservation Effects Assessment Projects (CEAP), documenting a variety of previously published outcomes with update and expansion of techniques using additional unpublished data and analyses as appropriate.</span></p>","language":"English","publisher":"Wiley","doi":"10.1002/jeq2.70082","usgsCitation":"Hively, W.D., Gao, F., McCarty, G.W., Daughtry, C.S., Zhang, X., Jennewein, J., Thieme, A., Lamb, B.T., Keppler, J., Hapeman, C.J., Cosh, M., and Mirsky, S.B., 2025, Satellite assessment of winter cover crop and conservation tillage outcomes to support adaptive management in working landscapes: Journal of Environmental Quality, v. 54, no. 6, p. 1548-1571, https://doi.org/10.1002/jeq2.70082.","productDescription":"24 p.","startPage":"1548","endPage":"1571","ipdsId":"IP-174155","costCenters":[{"id":24708,"text":"Lower Mississippi-Gulf Water Science Center","active":true,"usgs":true}],"links":[{"id":498052,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1002/jeq2.70082","text":"Publisher Index Page"},{"id":497934,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Maryland","otherGeospatial":"Chesapeake Bay, Delmarva Peninsula","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -75.968001494542,\n              38.9830420903468\n            ],\n            [\n              -76.13945750419632,\n              38.41949313855301\n            ],\n            [\n              -75.79643857812154,\n              38.461896436666535\n            ],\n            [\n              -75.63401655681334,\n              39.0636830303699\n            ],\n            [\n              -75.968001494542,\n              38.9830420903468\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"54","issue":"6","noUsgsAuthors":false,"publicationDate":"2025-10-21","publicationStatus":"PW","contributors":{"authors":[{"text":"Hively, W. Dean 0000-0002-5383-8064","orcid":"https://orcid.org/0000-0002-5383-8064","contributorId":201565,"corporation":false,"usgs":true,"family":"Hively","given":"W.","email":"","middleInitial":"Dean","affiliations":[{"id":24708,"text":"Lower Mississippi-Gulf Water Science Center","active":true,"usgs":true},{"id":242,"text":"Eastern Geographic Science Center","active":true,"usgs":true}],"preferred":true,"id":952861,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Gao, Feng 0000-0002-1865-2846","orcid":"https://orcid.org/0000-0002-1865-2846","contributorId":70671,"corporation":false,"usgs":false,"family":"Gao","given":"Feng","email":"","affiliations":[{"id":6622,"text":"US Department of Agriculture","active":true,"usgs":false}],"preferred":false,"id":952862,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"McCarty, Gregory W.","contributorId":78861,"corporation":false,"usgs":true,"family":"McCarty","given":"Gregory","email":"","middleInitial":"W.","affiliations":[],"preferred":false,"id":952863,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Daughtry, Craig S.T.","contributorId":75863,"corporation":false,"usgs":true,"family":"Daughtry","given":"Craig","email":"","middleInitial":"S.T.","affiliations":[],"preferred":false,"id":952864,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Zhang, Xuesong 0000-0003-4711-7751","orcid":"https://orcid.org/0000-0003-4711-7751","contributorId":364557,"corporation":false,"usgs":false,"family":"Zhang","given":"Xuesong","affiliations":[{"id":65190,"text":"USDA-ARS Hydrology and Remote Sensing Laboratory","active":true,"usgs":false}],"preferred":false,"id":952865,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Jennewein, Jyoti 0000-0002-9650-6537","orcid":"https://orcid.org/0000-0002-9650-6537","contributorId":364558,"corporation":false,"usgs":false,"family":"Jennewein","given":"Jyoti","affiliations":[{"id":86849,"text":"USDA-ARS Sustainable Agricutural Systems Laboratory","active":true,"usgs":false}],"preferred":false,"id":952866,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Thieme, Alison 0000-0001-5458-7554","orcid":"https://orcid.org/0000-0001-5458-7554","contributorId":364559,"corporation":false,"usgs":false,"family":"Thieme","given":"Alison","affiliations":[{"id":86849,"text":"USDA-ARS Sustainable Agricutural Systems Laboratory","active":true,"usgs":false}],"preferred":false,"id":952867,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Lamb, Brian T. 0000-0001-7957-5488","orcid":"https://orcid.org/0000-0001-7957-5488","contributorId":291893,"corporation":false,"usgs":true,"family":"Lamb","given":"Brian","middleInitial":"T.","affiliations":[{"id":24708,"text":"Lower Mississippi-Gulf Water Science Center","active":true,"usgs":true}],"preferred":true,"id":952868,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Keppler, Jason","contributorId":364560,"corporation":false,"usgs":false,"family":"Keppler","given":"Jason","affiliations":[{"id":65189,"text":"Maryland Department of Agriculture","active":true,"usgs":false}],"preferred":false,"id":952869,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Hapeman, Cathleen J. 0000-0003-3439-2826","orcid":"https://orcid.org/0000-0003-3439-2826","contributorId":364550,"corporation":false,"usgs":false,"family":"Hapeman","given":"Cathleen","middleInitial":"J.","affiliations":[{"id":86844,"text":"U.S. Department of Agriculture, Agricultural Research Service (USDA-ARS), Hydrology and Remote Sensing Laboratory, Beltsville Agricultural Research Center, Beltsville, Maryland, USA","active":true,"usgs":false}],"preferred":false,"id":952870,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Cosh, Michael 0000-0003-4776-1918","orcid":"https://orcid.org/0000-0003-4776-1918","contributorId":364561,"corporation":false,"usgs":false,"family":"Cosh","given":"Michael","affiliations":[{"id":65190,"text":"USDA-ARS Hydrology and Remote Sensing Laboratory","active":true,"usgs":false}],"preferred":false,"id":952871,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Mirsky, Steven B. 0000-0003-3016-5773","orcid":"https://orcid.org/0000-0003-3016-5773","contributorId":364562,"corporation":false,"usgs":false,"family":"Mirsky","given":"Steven","middleInitial":"B.","affiliations":[{"id":86849,"text":"USDA-ARS Sustainable Agricutural Systems Laboratory","active":true,"usgs":false}],"preferred":false,"id":952872,"contributorType":{"id":1,"text":"Authors"},"rank":12}]}}
,{"id":70275666,"text":"70275666 - 2025 - Refinements to the attenuated propagation of local earthquake shaking (APPLES) ground-motion-based earthquake early warning algorithm","interactions":[],"lastModifiedDate":"2026-05-07T15:02:17.00563","indexId":"70275666","displayToPublicDate":"2025-10-21T00:00:00","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1803,"text":"Geophysical Journal International","active":true,"publicationSubtype":{"id":10}},"title":"Refinements to the attenuated propagation of local earthquake shaking (APPLES) ground-motion-based earthquake early warning algorithm","docAbstract":"<p><span id=\"_mce_caret\" data-mce-bogus=\"1\" data-mce-type=\"format-caret\"><span>We refined the Attenuated ProPagation of Local Earthquake Shaking (APPLES) ground-motion-based earthquake early warning (EEW) approach, and directly compare APPLES performance with that of the source-characterization-based U.S. ShakeAlert EEW system for a suite of historical earthquakes in the U.S. West Coast and Japan. APPLES is an extension of the Propagation of Local Undamped Motion (PLUM) algorithm in which observed shaking intensity at seismic stations is used to forward-predict intensity distributions to surrounding areas using an attenuation model derived from an intensity prediction equation. We test new configuration options within APPLES, such as using the second highest estimated ground motion rather than the maximum, to better match median ground-motion observations and reduce alerts for small magnitude earthquakes, both of which are key alerting priorities within ShakeAlert. We evaluate these configurations alongside ShakeAlert by comparing the ground-motion estimation accuracy and available warning times relative to station observations and ShakeMap distributions. Our preferred APPLES configuration produces accurate ground-motion estimates and corresponds better with median observations compared to ShakeAlert’s estimates. This preferred configuration substantially reduces alert issuance for&nbsp;</span><strong>M</strong><span>&nbsp;&lt;&nbsp;5.0 earthquakes compared to the previous APPLES configuration, and alert-release criteria can further restrict alerts to primarily&nbsp;</span><strong>M</strong><span>&nbsp;≥&nbsp;5.5 earthquakes without requiring magnitude estimation. Prioritizing matching median-observed ground motions may reduce APPLES warning times compared to configurations that were tuned to avoid missed alerts (such as those that use the maximum estimated ground motions), which can lead to shorter warning times compared to ShakeAlert for the same alert threshold. However, station-based warning time assessments demonstrate that APPLES can outperform ShakeAlert for high target thresholds. APPLES is a simple, independent EEW approach that may improve the robustness of EEW for the West Coast of the U.S.</span></span></p>","language":"English","publisher":"Royal Astronomical Society","doi":"10.1093/gji/ggaf418","usgsCitation":"Saunders, J.K., Cochran, E.S., and Bunn, J.J., 2025, Refinements to the attenuated propagation of local earthquake shaking (APPLES) ground-motion-based earthquake early warning algorithm: Geophysical Journal International, v. 244, no. 2, ggaf418, 24 p., https://doi.org/10.1093/gji/ggaf418.","productDescription":"ggaf418, 24 p.","ipdsId":"IP-181476","costCenters":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"links":[{"id":504216,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1093/gji/ggaf418","text":"Publisher Index Page"},{"id":504090,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"Japan, United States","state":"California, Oregon, Washington","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -125.44305290549902,\n              48.65713224926395\n            ],\n            [\n              -124.50027501467878,\n              38.41526737779636\n            ],\n            [\n              -120.27050579014963,\n              32.167812354067266\n            ],\n            [\n              -113.90343380505657,\n              32.576485061470734\n            ],\n            [\n              -119.74986669071149,\n              38.70242582641148\n            ],\n            [\n              -120.09795537935892,\n              41.438088005563756\n            ],\n            [\n              -116.64743288455549,\n              42.072978233643845\n            ],\n            [\n              -117.05337787409088,\n              49.152736704945426\n            ],\n            [\n              -125.44305290549902,\n              48.65713224926395\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    },\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              139.64881039838525,\n              45.81869299155122\n            ],\n            [\n              138.27874971465718,\n              38.87123859565665\n            ],\n            [\n              130.22546947735685,\n              35.11704550556303\n            ],\n            [\n              127.88642382505674,\n              31.025006925069675\n            ],\n            [\n              132.1925077938477,\n              30.202816832486903\n            ],\n            [\n              143.1512099095705,\n              35.53861278887114\n            ],\n            [\n              146.78417455071667,\n              44.93988402382655\n            ],\n            [\n              139.64881039838525,\n              45.81869299155122\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"244","issue":"2","noUsgsAuthors":false,"publicationDate":"2025-10-21","publicationStatus":"PW","contributors":{"authors":[{"text":"Saunders, Jessie K.","contributorId":371243,"corporation":false,"usgs":false,"family":"Saunders","given":"Jessie","middleInitial":"K.","affiliations":[{"id":13711,"text":"Caltech","active":true,"usgs":false}],"preferred":false,"id":961348,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Cochran, Elizabeth S. 0000-0003-2485-4484 ecochran@usgs.gov","orcid":"https://orcid.org/0000-0003-2485-4484","contributorId":2025,"corporation":false,"usgs":true,"family":"Cochran","given":"Elizabeth","email":"ecochran@usgs.gov","middleInitial":"S.","affiliations":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"preferred":true,"id":961349,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Bunn, Julian J.","contributorId":216379,"corporation":false,"usgs":false,"family":"Bunn","given":"Julian","middleInitial":"J.","affiliations":[{"id":13711,"text":"Caltech","active":true,"usgs":false}],"preferred":false,"id":961350,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70272449,"text":"70272449 - 2025 - Expression and mechanisms of behavioral plasticity in large mammals","interactions":[],"lastModifiedDate":"2025-11-21T18:21:10.277585","indexId":"70272449","displayToPublicDate":"2025-10-20T12:05:47","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1475,"text":"Ecosphere","active":true,"publicationSubtype":{"id":10}},"title":"Expression and mechanisms of behavioral plasticity in large mammals","docAbstract":"<p><span>Behavioral plasticity, the alteration of behavior in response to stimuli, is becoming increasingly important in the context of human-induced rapid environmental change. Theoretical and empirical studies suggest that the expression and magnitude of behavioral plasticity are likely facilitated or constrained primarily by two factors: environmental variation and endogenous traits such as body size. The contextual role of these factors on behavioral plasticity, however, is poorly understood; there are relatively few studies that have compared the magnitude and potential drivers of behavioral plasticity at different levels (i.e., population and individual) across species, especially in free-ranging animals with diverse behavioral traits such as large mammals. Here, we quantify and test potential hypotheses for the mechanisms underpinning behavioral plasticity at the individual and population level in response to variation in summer temperatures for 1068 animal-years in 17 populations across nine species of large mammals. All populations displayed behavioral plasticity in response to increased temperatures, modifying their relative selection for heat-relieving habitat attributes (e.g., elevation) and heat-generating behavior (i.e., movement speed). We found strong support for the hypothesis that the variability of the physical environment is an important driver of behavioral plasticity—both mean population behavioral plasticity and variation among individuals within each population in plasticity were lower with increased heterogeneity of habitat attributes such as tree cover. Yet, the variability in environmental conditions (i.e., the magnitude of the temperature increase) had no effect on behavioral plasticity within and among populations. We did not detect an effect of endogenous traits on the expression of behavioral plasticity; however, we note that data availability limited our tests of this hypothesis to a select few endogenous traits (body size, feeding guild, and sex of the tracked individuals) that predominantly vary at the species level, for which we had one to three replicate populations per species. Our results provide an integrative and generalizable understanding of the expression of behavioral plasticity among populations of large mammals in temperate environments and emphasize the important but nuanced role of environmental variation in determining the scope of behavioral plasticity in these populations.</span></p>","language":"English","publisher":"Ecological Society of America","doi":"10.1002/ecs2.70432","usgsCitation":"Thomas-Kuzilik, R.R., Becker, J.A., Beck, J.L., Clapp, J.G., Courtemanch, A.B., Fralick, G.L., Geremia, C., Hall, L.E., Kauffman, M., Lowrey, B., Metz, M.C., Miyasaki, H.M., Monteith, K.L., Ortega, A.C., Sawyer, H., Smith, D.W., Stahler, E.E., Stahler, D.R., Verzuh, T.L., and Merkle, J.A., 2025, Expression and mechanisms of behavioral plasticity in large mammals: Ecosphere, v. 16, no. 10, e70432, 27 p., https://doi.org/10.1002/ecs2.70432.","productDescription":"e70432, 27 p.","ipdsId":"IP-165914","costCenters":[{"id":481,"text":"Northern Rocky Mountain Science Center","active":true,"usgs":true}],"links":[{"id":496922,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1002/ecs2.70432","text":"Publisher Index Page"},{"id":496782,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Wyoming","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -111.05444391365384,\n              44.981739589770086\n            ],\n            [\n              -111.05444391365384,\n              41.00306317425938\n            ],\n            [\n              -104.09549358601788,\n              41.00306317425938\n            ],\n            [\n              -104.09549358601788,\n              44.981739589770086\n            ],\n            [\n              -111.05444391365384,\n              44.981739589770086\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"16","issue":"10","noUsgsAuthors":false,"publicationDate":"2025-10-20","publicationStatus":"PW","contributors":{"authors":[{"text":"Thomas-Kuzilik, Rebecca R.","contributorId":362836,"corporation":false,"usgs":false,"family":"Thomas-Kuzilik","given":"Rebecca","middleInitial":"R.","affiliations":[],"preferred":false,"id":950754,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Becker, Justine A.","contributorId":362837,"corporation":false,"usgs":false,"family":"Becker","given":"Justine","middleInitial":"A.","affiliations":[],"preferred":false,"id":950755,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Beck, Jeffrey L.","contributorId":287806,"corporation":false,"usgs":false,"family":"Beck","given":"Jeffrey","middleInitial":"L.","affiliations":[{"id":12729,"text":"UW","active":true,"usgs":false}],"preferred":false,"id":950831,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Clapp, Justin G.","contributorId":362838,"corporation":false,"usgs":false,"family":"Clapp","given":"Justin","middleInitial":"G.","affiliations":[],"preferred":false,"id":950756,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Courtemanch, Alyson B.","contributorId":362839,"corporation":false,"usgs":false,"family":"Courtemanch","given":"Alyson","middleInitial":"B.","affiliations":[],"preferred":false,"id":950757,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Fralick, Gary L.","contributorId":362840,"corporation":false,"usgs":false,"family":"Fralick","given":"Gary","middleInitial":"L.","affiliations":[],"preferred":false,"id":950758,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Geremia, Chris","contributorId":362841,"corporation":false,"usgs":false,"family":"Geremia","given":"Chris","affiliations":[],"preferred":false,"id":950759,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Hall, L. Embere","contributorId":362842,"corporation":false,"usgs":false,"family":"Hall","given":"L.","middleInitial":"Embere","affiliations":[],"preferred":false,"id":950760,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Kauffman, Matthew J. 0000-0003-0127-3900","orcid":"https://orcid.org/0000-0003-0127-3900","contributorId":210786,"corporation":false,"usgs":true,"family":"Kauffman","given":"Matthew","middleInitial":"J.","affiliations":[{"id":484,"text":"Northwest Climate Science Center","active":true,"usgs":true}],"preferred":true,"id":950761,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Lowrey, Blake 0000-0002-4994-2117","orcid":"https://orcid.org/0000-0002-4994-2117","contributorId":335494,"corporation":false,"usgs":true,"family":"Lowrey","given":"Blake","email":"","affiliations":[{"id":481,"text":"Northern Rocky Mountain Science Center","active":true,"usgs":true}],"preferred":true,"id":950753,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Metz, Matthew C.","contributorId":362843,"corporation":false,"usgs":false,"family":"Metz","given":"Matthew","middleInitial":"C.","affiliations":[],"preferred":false,"id":950762,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Miyasaki, Hollie M.","contributorId":362844,"corporation":false,"usgs":false,"family":"Miyasaki","given":"Hollie","middleInitial":"M.","affiliations":[],"preferred":false,"id":950763,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Monteith, Kevin L.","contributorId":362845,"corporation":false,"usgs":false,"family":"Monteith","given":"Kevin","middleInitial":"L.","affiliations":[],"preferred":false,"id":950764,"contributorType":{"id":1,"text":"Authors"},"rank":13},{"text":"Ortega, Anna C.","contributorId":362846,"corporation":false,"usgs":false,"family":"Ortega","given":"Anna","middleInitial":"C.","affiliations":[],"preferred":false,"id":950765,"contributorType":{"id":1,"text":"Authors"},"rank":14},{"text":"Sawyer, Hall","contributorId":362847,"corporation":false,"usgs":false,"family":"Sawyer","given":"Hall","affiliations":[],"preferred":false,"id":950766,"contributorType":{"id":1,"text":"Authors"},"rank":15},{"text":"Smith, Douglas W.","contributorId":362848,"corporation":false,"usgs":false,"family":"Smith","given":"Douglas","middleInitial":"W.","affiliations":[],"preferred":false,"id":950767,"contributorType":{"id":1,"text":"Authors"},"rank":16},{"text":"Stahler, Erin E.","contributorId":362849,"corporation":false,"usgs":false,"family":"Stahler","given":"Erin","middleInitial":"E.","affiliations":[],"preferred":false,"id":950768,"contributorType":{"id":1,"text":"Authors"},"rank":17},{"text":"Stahler, Daniel R.","contributorId":362850,"corporation":false,"usgs":false,"family":"Stahler","given":"Daniel","middleInitial":"R.","affiliations":[],"preferred":false,"id":950769,"contributorType":{"id":1,"text":"Authors"},"rank":18},{"text":"Verzuh, Tana L.","contributorId":362851,"corporation":false,"usgs":false,"family":"Verzuh","given":"Tana","middleInitial":"L.","affiliations":[],"preferred":false,"id":950770,"contributorType":{"id":1,"text":"Authors"},"rank":19},{"text":"Merkle, Jerod A.","contributorId":362852,"corporation":false,"usgs":false,"family":"Merkle","given":"Jerod","middleInitial":"A.","affiliations":[],"preferred":false,"id":950771,"contributorType":{"id":1,"text":"Authors"},"rank":20}]}}
,{"id":70272653,"text":"70272653 - 2025 - GlASS - Global Aggregation of Stream Silica","interactions":[],"lastModifiedDate":"2025-12-02T16:14:50.459605","indexId":"70272653","displayToPublicDate":"2025-10-20T10:07:55","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3907,"text":"Scientific Data","active":true,"publicationSubtype":{"id":10}},"title":"GlASS - Global Aggregation of Stream Silica","docAbstract":"<p><span>Riverine silicon (Si) plays a vital role in governing primary production, water quality, and carbon cycling. Climate and land cover change have altered how dissolved Si (DSi) is processed on land, transported to rivers, and cycled through aquatic ecosystems. The Global Aggregation of Stream Silica (GlASS) database was constructed to assess changes in river Si concentrations and fluxes, their relationship to other nutrients (nitrogen (N) and phosphorus (P)), and to evaluate mechanisms driving the availability of Si. GlASS includes concentrations of DSi, dissolved inorganic N (NO</span><sub>3</sub><span>, NO</span><sub>x</sub><span>, and NH</span><sub>4</sub><span>), and dissolved inorganic P (as soluble reactive P or PO</span><sub>4</sub><span>-P) at daily to quarterly time steps from 1963 to 2024; daily discharge; and watershed characteristics for 421 rivers spanning eight climate zones. Original data sources are cited, data quality assurance workflows are public, and input files to a common load model are provided. GlASS offers critical data to address questions about patterns, controls, and trajectories of global river Si biogeochemistry and stoichiometry.</span></p>","language":"English","publisher":"Nature","doi":"10.1038/s41597-025-05937-2","usgsCitation":"Jankowski, K.J., Johnson, K., Lyon, N., Bush, S.A., Julian, P., Sethna, L.R., McKnight, D.M., McDowell, W.H., Wymore, A.S., Kortelainen, P., Laudon, H., Heindel, R.C., Poste, A., Shogren, A.J., Worrall, F., Mosley, L., Sullivan, P.L., and Carey, J.C., 2025, GlASS - Global Aggregation of Stream Silica: Scientific Data, v. 12, 1658, 12 p., https://doi.org/10.1038/s41597-025-05937-2.","productDescription":"1658, 12 p.","ipdsId":"IP-170409","costCenters":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"links":[{"id":497084,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1038/s41597-025-05937-2","text":"Publisher Index Page"},{"id":496989,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"12","noUsgsAuthors":false,"publicationDate":"2025-10-20","publicationStatus":"PW","contributors":{"authors":[{"text":"Jankowski, Kathi Jo 0000-0002-3292-4182","orcid":"https://orcid.org/0000-0002-3292-4182","contributorId":207429,"corporation":false,"usgs":true,"family":"Jankowski","given":"Kathi","email":"","middleInitial":"Jo","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":951176,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Johnson, Keira 0000-0003-0671-3901","orcid":"https://orcid.org/0000-0003-0671-3901","contributorId":330720,"corporation":false,"usgs":false,"family":"Johnson","given":"Keira","email":"","affiliations":[{"id":78986,"text":"College of Earth, Ocean, and Atmospheric Science, Oregon State University, Corvallis, Oregon, 97331","active":true,"usgs":false}],"preferred":false,"id":951177,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Lyon, Nicholas 0000-0003-3905-1078","orcid":"https://orcid.org/0000-0003-3905-1078","contributorId":332697,"corporation":false,"usgs":false,"family":"Lyon","given":"Nicholas","email":"","affiliations":[{"id":79584,"text":"1021 Anacapa St, Santa Barbara, CA 93101","active":true,"usgs":false}],"preferred":false,"id":951178,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Bush, Sidney A. 0000-0002-8359-7927","orcid":"https://orcid.org/0000-0002-8359-7927","contributorId":265930,"corporation":false,"usgs":false,"family":"Bush","given":"Sidney","email":"","middleInitial":"A.","affiliations":[{"id":36627,"text":"University of Colorado, Boulder","active":true,"usgs":false}],"preferred":false,"id":951179,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Julian, Paul 0000-0002-7617-1354","orcid":"https://orcid.org/0000-0002-7617-1354","contributorId":220292,"corporation":false,"usgs":false,"family":"Julian","given":"Paul","email":"","affiliations":[{"id":36221,"text":"University of Florida","active":true,"usgs":false}],"preferred":false,"id":951180,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Sethna, Lienne R. 0000-0003-1156-172X","orcid":"https://orcid.org/0000-0003-1156-172X","contributorId":330721,"corporation":false,"usgs":false,"family":"Sethna","given":"Lienne","email":"","middleInitial":"R.","affiliations":[{"id":78987,"text":"St. Croix Watershed Research Station, Marine on St. Croix, Minnesota 55047","active":true,"usgs":false}],"preferred":false,"id":951181,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"McKnight, Diane M. 0000-0002-4171-1533","orcid":"https://orcid.org/0000-0002-4171-1533","contributorId":363155,"corporation":false,"usgs":false,"family":"McKnight","given":"Diane","middleInitial":"M.","affiliations":[{"id":86630,"text":"Department of Civil, Environmental, and Architectural Engineering, University of Colorado Boulder, Boulder, Colorado, 80309","active":true,"usgs":false}],"preferred":false,"id":951182,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"McDowell, William H. 0000-0002-8739-9047","orcid":"https://orcid.org/0000-0002-8739-9047","contributorId":363156,"corporation":false,"usgs":false,"family":"McDowell","given":"William","middleInitial":"H.","affiliations":[{"id":86632,"text":"Department of Natural Resources and the Environment, University of New Hampshire, Durham, New Hampshire, 03824","active":true,"usgs":false}],"preferred":false,"id":951183,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Wymore, Adam S. 0000-0002-6725-916X","orcid":"https://orcid.org/0000-0002-6725-916X","contributorId":363157,"corporation":false,"usgs":false,"family":"Wymore","given":"Adam","middleInitial":"S.","affiliations":[{"id":86632,"text":"Department of Natural Resources and the Environment, University of New Hampshire, Durham, New Hampshire, 03824","active":true,"usgs":false}],"preferred":false,"id":951184,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Kortelainen, Pirkko","contributorId":247649,"corporation":false,"usgs":false,"family":"Kortelainen","given":"Pirkko","affiliations":[{"id":40382,"text":"Finnish Environment Institute","active":true,"usgs":false}],"preferred":false,"id":951185,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Laudon, Hjalmar","contributorId":192976,"corporation":false,"usgs":false,"family":"Laudon","given":"Hjalmar","email":"","affiliations":[],"preferred":false,"id":951186,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Heindel, Ruth C. 0000-0001-6292-2076","orcid":"https://orcid.org/0000-0001-6292-2076","contributorId":225133,"corporation":false,"usgs":false,"family":"Heindel","given":"Ruth","email":"","middleInitial":"C.","affiliations":[{"id":36621,"text":"University of Colorado","active":true,"usgs":false}],"preferred":false,"id":951187,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Poste, Amanda 0000-0001-5255-5356","orcid":"https://orcid.org/0000-0001-5255-5356","contributorId":333903,"corporation":false,"usgs":false,"family":"Poste","given":"Amanda","email":"","affiliations":[{"id":33046,"text":"Norwegian Institute for Nature Research","active":true,"usgs":false}],"preferred":false,"id":951188,"contributorType":{"id":1,"text":"Authors"},"rank":13},{"text":"Shogren, Arial J. 0000-0002-1284-3836","orcid":"https://orcid.org/0000-0002-1284-3836","contributorId":330722,"corporation":false,"usgs":false,"family":"Shogren","given":"Arial","email":"","middleInitial":"J.","affiliations":[{"id":78990,"text":"Department of Biological Sciences, University of Alabama, Tuscaloosa, AL, 35457","active":true,"usgs":false}],"preferred":false,"id":951189,"contributorType":{"id":1,"text":"Authors"},"rank":14},{"text":"Worrall, Fred 0000-0002-4139-1330","orcid":"https://orcid.org/0000-0002-4139-1330","contributorId":358045,"corporation":false,"usgs":false,"family":"Worrall","given":"Fred","affiliations":[{"id":37954,"text":"University of Durham","active":true,"usgs":false}],"preferred":false,"id":951190,"contributorType":{"id":1,"text":"Authors"},"rank":15},{"text":"Mosley, Luke 0000-0002-7446-8955","orcid":"https://orcid.org/0000-0002-7446-8955","contributorId":358046,"corporation":false,"usgs":false,"family":"Mosley","given":"Luke","affiliations":[{"id":37953,"text":"The University of Adelaide","active":true,"usgs":false}],"preferred":false,"id":951191,"contributorType":{"id":1,"text":"Authors"},"rank":16},{"text":"Sullivan, Pamela L. 0000-0001-8780-8501","orcid":"https://orcid.org/0000-0001-8780-8501","contributorId":330723,"corporation":false,"usgs":false,"family":"Sullivan","given":"Pamela","email":"","middleInitial":"L.","affiliations":[{"id":78986,"text":"College of Earth, Ocean, and Atmospheric Science, Oregon State University, Corvallis, Oregon, 97331","active":true,"usgs":false}],"preferred":false,"id":951192,"contributorType":{"id":1,"text":"Authors"},"rank":17},{"text":"Carey, Joanna C. 0000-0003-2365-9185","orcid":"https://orcid.org/0000-0003-2365-9185","contributorId":363158,"corporation":false,"usgs":false,"family":"Carey","given":"Joanna","middleInitial":"C.","affiliations":[{"id":86633,"text":"Babson College","active":true,"usgs":false}],"preferred":false,"id":951193,"contributorType":{"id":1,"text":"Authors"},"rank":18}]}}
,{"id":70274022,"text":"70274022 - 2025 - Red spruce forest stand structure and Virginia northern flying squirrel habitat suitability","interactions":[],"lastModifiedDate":"2026-02-20T15:26:36.787455","indexId":"70274022","displayToPublicDate":"2025-10-20T09:24:53","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2043,"text":"International Journal of Forestry Research","active":true,"publicationSubtype":{"id":10}},"title":"Red spruce forest stand structure and Virginia northern flying squirrel habitat suitability","docAbstract":"<p><span>The Virginia northern flying squirrel (</span><i>Glaucomys sabrinus fuscus</i><span>; VNFS) is a rare, Pleistocene-relict, disjunct subspecies of the northern flying squirrel. The squirrel occurs only in high-elevation red spruce (</span><i>Picea rubens</i><span>) forests of the central Appalachian Mountains of Virginia and West Virginia—a forest type that was substantially reduced by exploitative logging and wildfire in the 1890s–1930. Owing to its cryptic nature and difficulty of capture, managers have relied on an evolving series of predicted habitat suitability models that primarily have used topographic measures and red spruce cover class to assess potential occupancy on the landscape. Currently, VNFS is considered the sentinel species in the region whereby its predicted presence indicates red spruce forests with higher relative habitat integrity, and unsuitable habitat highlights where red spruce restoration or enhancement should occur. However, extant VNFS models only use red spruce percent composition and do not provide insights into forest structure, such as forest canopy height or basal area, that are needed by managers to implement restoration or assess effectiveness. We examined recent historical VNFS observations from nest-box surveys and radiotelemetry data (natural dens and foraging points) relative to random pseudoabsence points across red spruce cover classes from the most current VNFS predicted probability habitat model. Using generalized linear models in an information-theoretic approach, we found that within each red spruce composition class, suitable VNFS habitat was related to increased forest canopy height (m), basal area (m</span><sup>2</sup><span>·ha</span><sup>−1</sup><span>), quadratic mean diameter (cm), and stem density (number of trees ha</span><sup>−1</sup><span>), indicating that, within red spruce and mixed red spruce–northern hardwood forests, VNFS is associated most with mature forest conditions. Accordingly, our results could be recombined with habitat suitability models to prioritize where, for example, red spruce forest structural enhancement would facilitate shifting a given stand to a higher probability condition for VNFS use.</span></p>","language":"English","publisher":"Wiley","doi":"10.1155/ijfr/4526136","usgsCitation":"Humbert, T.R., McKellips, A.W., Carter, D.R., Green, P.C., De La Cruz, J.L., Diggins, C.A., Ford, W., 2025, Red spruce forest stand structure and Virginia northern flying squirrel habitat suitability: International Journal of Forestry Research, v. 2025, 4526136, 9 p., https://doi.org/10.1155/ijfr/4526136.","productDescription":"4526136, 9 p.","ipdsId":"IP-180938","costCenters":[{"id":199,"text":"Coop Res Unit Leetown","active":true,"usgs":true}],"links":[{"id":500828,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1155/ijfr/4526136","text":"Publisher Index Page"},{"id":500341,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Maryland, Virginia, West Virginia","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -78,\n              39.5833\n            ],\n            [\n              -80.833,\n              39.5833\n            ],\n            [\n              -80.833,\n              37.9167\n            ],\n            [\n              -78,\n              37.9167\n            ],\n            [\n              -78,\n              39.5833\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"2025","noUsgsAuthors":false,"publicationDate":"2025-10-20","publicationStatus":"PW","contributors":{"authors":[{"text":"Humbert, Tanner R.","contributorId":366758,"corporation":false,"usgs":false,"family":"Humbert","given":"Tanner","middleInitial":"R.","affiliations":[{"id":25550,"text":"Virginia Polytechnic Institute and State University","active":true,"usgs":false}],"preferred":false,"id":956186,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"McKellips, Abigail W.","contributorId":366759,"corporation":false,"usgs":false,"family":"McKellips","given":"Abigail","middleInitial":"W.","affiliations":[{"id":25550,"text":"Virginia Polytechnic Institute and State University","active":true,"usgs":false}],"preferred":false,"id":956187,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Carter, David R.","contributorId":366863,"corporation":false,"usgs":false,"family":"Carter","given":"David","middleInitial":"R.","affiliations":[],"preferred":false,"id":956333,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Green, P. 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Mark 0000-0002-9611-594X wford@usgs.gov","orcid":"https://orcid.org/0000-0002-9611-594X","contributorId":172499,"corporation":false,"usgs":true,"family":"Ford","given":"W. Mark","email":"wford@usgs.gov","affiliations":[{"id":199,"text":"Coop Res Unit Leetown","active":true,"usgs":true},{"id":198,"text":"Coop Res Unit Atlanta","active":true,"usgs":true}],"preferred":false,"id":956191,"contributorType":{"id":1,"text":"Authors"},"rank":7}]}}
,{"id":70272267,"text":"70272267 - 2025 - Land application of biosolid, livestock, and drilling wastes to US farmland: A potential pathway for the redistribution of contaminants in the environment","interactions":[],"lastModifiedDate":"2025-11-21T17:28:56.782335","indexId":"70272267","displayToPublicDate":"2025-10-20T07:56:56","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":9161,"text":"Environmental Science: Processes & Impacts","active":true,"publicationSubtype":{"id":10}},"title":"Land application of biosolid, livestock, and drilling wastes to US farmland: A potential pathway for the redistribution of contaminants in the environment","docAbstract":"<p><span>In the United States (U.S.), waste byproducts generated from the treatment of municipal waste (biosolids), production of livestock (livestock waste), and drilling of oil and gas wells (drilling waste) are commonly applied to agricultural lands. Although this can be a cost-effective reuse/disposal practice, there is limited research on the potential for contaminant exposures and effects on ecosystems, wildlife, and human health from such land applications. In this study, we conducted extensive chemical, microbial, and toxicity analyses of biosolid, livestock, and drilling wastes just prior to land application on agricultural lands at 34 sites across the U.S. Twenty-two analytical methods were used to determine potential contaminant exposures profiles for 452 organic and 114 inorganic chemicals, nine microbial groups, estrogenicity, and cytotoxicity. Analytical results document unique and substantial chemical, microbial, and toxicity profiles for these land-applied wastes. Of the three waste byproducts, biosolids contained the greatest concentrations of household chemicals, pesticides, pharmaceuticals, per-/polyfluoroalkyl substances, calcium, and phosphorus. Livestock waste contained the greatest concentrations of total and leachable dissolved organic carbon, biogenic hormones, mycotoxins, plant estrogens, total inorganic nitrogen, and potassium. Drilling waste contained the greatest concentrations of BTEX compounds (benzene, toluene, ethylbenzene, and xylenes), polycyclic aromatic hydrocarbons, rare-earth elements, barium, strontium, and uranium–thorium series radioisotopes. Biosolid and livestock wastes had greater culturable heterotrophic bacteria, halophilic bacteria,&nbsp;</span><i>Escherichia coli</i><span>&nbsp;(</span><i>E. coli</i><span>), enterococci, and staphylococci concentrations, and greater microbial diversity than drilling waste. Bioassay analyses indicated that exposure to contaminants in livestock wastes and biosolids could result in estrogenic effects, whereas exposure to contaminants in drilling waste could result in cytotoxic effects. Our study documents that current reuse/disposal practices for biosolid, livestock, and drilling wastes on agricultural lands could provide a potential pathway for the redistribution of unique and complex contaminant mixtures into the environment that have bioactive, endocrine disrupting, and carcinogenic characteristics. Results of this study provide a snapshot of chemical compositions and concentrations that can be used to inform the development of best-management practices to help maximize beneficial reuse of these wastes and minimize risk to the environment and human health.</span></p>","language":"English","publisher":"Royal Society of Chemistry","doi":"10.1039/D5EM00312A","usgsCitation":"Masoner, J.R., Kolpin, D., Cozzarelli, I.M., Akob, D.M., Conaway, C.H., Givens, C.E., Hladik, M.L., Hubbard, L.E., Lane, R.F., McCleskey, R., Preston, T.M., Raines, C.D., Varonka, M., and Wilson, M.C., 2025, Land application of biosolid, livestock, and drilling wastes to US farmland: A potential pathway for the redistribution of contaminants in the environment: Environmental Science: Processes & Impacts, v. 27, p. 3372-3402, https://doi.org/10.1039/D5EM00312A.","productDescription":"31 p.","startPage":"3372","endPage":"3402","ipdsId":"IP-163070","costCenters":[{"id":48595,"text":"Oklahoma-Texas Water Science 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\"name\": \"United States\"\n      }\n    }\n  ]\n}","volume":"27","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Masoner, Jason R. 0000-0002-4829-6379 jmasoner@usgs.gov","orcid":"https://orcid.org/0000-0002-4829-6379","contributorId":3193,"corporation":false,"usgs":true,"family":"Masoner","given":"Jason","email":"jmasoner@usgs.gov","middleInitial":"R.","affiliations":[{"id":516,"text":"Oklahoma Water Science Center","active":true,"usgs":true},{"id":436,"text":"National Research Program - Eastern Branch","active":true,"usgs":true}],"preferred":true,"id":950733,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Kolpin, Dana W. 0000-0002-3529-6505","orcid":"https://orcid.org/0000-0002-3529-6505","contributorId":205652,"corporation":false,"usgs":true,"family":"Kolpin","given":"Dana W.","affiliations":[{"id":351,"text":"Iowa Water Science Center","active":true,"usgs":true},{"id":36532,"text":"Central Midwest Water Science Center","active":true,"usgs":true},{"id":37947,"text":"Upper Midwest Water Science Center","active":true,"usgs":true},{"id":35680,"text":"Illinois-Iowa-Missouri Water Science Center","active":true,"usgs":true}],"preferred":true,"id":950618,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Cozzarelli, Isabelle M. 0000-0002-5123-1007 icozzare@usgs.gov","orcid":"https://orcid.org/0000-0002-5123-1007","contributorId":1693,"corporation":false,"usgs":true,"family":"Cozzarelli","given":"Isabelle","email":"icozzare@usgs.gov","middleInitial":"M.","affiliations":[{"id":436,"text":"National Research Program - Eastern Branch","active":true,"usgs":true},{"id":49175,"text":"Geology, Energy & Minerals Science Center","active":true,"usgs":true}],"preferred":true,"id":950619,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Akob, Denise M. 0000-0003-1534-3025 dakob@usgs.gov","orcid":"https://orcid.org/0000-0003-1534-3025","contributorId":217750,"corporation":false,"usgs":true,"family":"Akob","given":"Denise","email":"dakob@usgs.gov","middleInitial":"M.","affiliations":[{"id":436,"text":"National Research Program - Eastern Branch","active":true,"usgs":true}],"preferred":true,"id":950620,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Conaway, Christopher H. 0000-0002-0991-033X cconwaya@usgs.gov","orcid":"https://orcid.org/0000-0002-0991-033X","contributorId":127598,"corporation":false,"usgs":true,"family":"Conaway","given":"Christopher","email":"cconwaya@usgs.gov","middleInitial":"H.","affiliations":[{"id":438,"text":"National Research Program - Western Branch","active":true,"usgs":true}],"preferred":true,"id":950621,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Givens, Carrie E. 0000-0003-2543-9610","orcid":"https://orcid.org/0000-0003-2543-9610","contributorId":247691,"corporation":false,"usgs":true,"family":"Givens","given":"Carrie","middleInitial":"E.","affiliations":[{"id":37947,"text":"Upper Midwest Water Science Center","active":true,"usgs":true}],"preferred":true,"id":950622,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Hladik, Michelle L. 0000-0002-0891-2712","orcid":"https://orcid.org/0000-0002-0891-2712","contributorId":221087,"corporation":false,"usgs":true,"family":"Hladik","given":"Michelle","middleInitial":"L.","affiliations":[{"id":154,"text":"California Water Science Center","active":true,"usgs":true}],"preferred":true,"id":950623,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Hubbard, Laura E. 0000-0003-3813-1500 lhubbard@usgs.gov","orcid":"https://orcid.org/0000-0003-3813-1500","contributorId":4221,"corporation":false,"usgs":true,"family":"Hubbard","given":"Laura","email":"lhubbard@usgs.gov","middleInitial":"E.","affiliations":[{"id":37947,"text":"Upper Midwest Water Science Center","active":true,"usgs":true}],"preferred":true,"id":950624,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Lane, Rachael F. 0000-0001-9202-0612","orcid":"https://orcid.org/0000-0001-9202-0612","contributorId":222471,"corporation":false,"usgs":true,"family":"Lane","given":"Rachael","email":"","middleInitial":"F.","affiliations":[{"id":353,"text":"Kansas Water Science Center","active":false,"usgs":true}],"preferred":true,"id":950625,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"McCleskey, R. Blaine 0000-0002-2521-8052","orcid":"https://orcid.org/0000-0002-2521-8052","contributorId":205663,"corporation":false,"usgs":true,"family":"McCleskey","given":"R. Blaine","affiliations":[{"id":5044,"text":"National Research Program - Central Branch","active":true,"usgs":true},{"id":503,"text":"Office of Water Quality","active":true,"usgs":true},{"id":37277,"text":"WMA - Earth System Processes Division","active":true,"usgs":true}],"preferred":true,"id":950626,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Preston, Todd M. 0000-0002-8812-9233","orcid":"https://orcid.org/0000-0002-8812-9233","contributorId":204676,"corporation":false,"usgs":true,"family":"Preston","given":"Todd","email":"","middleInitial":"M.","affiliations":[{"id":481,"text":"Northern Rocky Mountain Science Center","active":true,"usgs":true}],"preferred":true,"id":950627,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Raines, Clayton D. 0000-0002-0403-190X","orcid":"https://orcid.org/0000-0002-0403-190X","contributorId":296362,"corporation":false,"usgs":true,"family":"Raines","given":"Clayton","middleInitial":"D.","affiliations":[{"id":50464,"text":"Eastern Ecological Science Center","active":true,"usgs":true}],"preferred":true,"id":950628,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Varonka, Matthew S. 0000-0003-3620-5262","orcid":"https://orcid.org/0000-0003-3620-5262","contributorId":203231,"corporation":false,"usgs":true,"family":"Varonka","given":"Matthew S.","affiliations":[{"id":516,"text":"Oklahoma Water Science Center","active":true,"usgs":true},{"id":241,"text":"Eastern Energy Resources Science Center","active":true,"usgs":true}],"preferred":true,"id":950629,"contributorType":{"id":1,"text":"Authors"},"rank":13},{"text":"Wilson, Michaelah C. 0000-0001-7052-9506","orcid":"https://orcid.org/0000-0001-7052-9506","contributorId":229469,"corporation":false,"usgs":true,"family":"Wilson","given":"Michaelah","email":"","middleInitial":"C.","affiliations":[{"id":35860,"text":"Ohio-Kentucky-Indiana Water Science Center","active":true,"usgs":true}],"preferred":true,"id":950630,"contributorType":{"id":1,"text":"Authors"},"rank":14}]}}
,{"id":70272774,"text":"70272774 - 2025 - Weather drivers of reproductive variability in perennial plants and their implications for climate change risks","interactions":[],"lastModifiedDate":"2025-12-08T16:09:24.410669","indexId":"70272774","displayToPublicDate":"2025-10-17T10:05:22","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2842,"text":"Nature Communications","active":true,"publicationSubtype":{"id":10}},"title":"Weather drivers of reproductive variability in perennial plants and their implications for climate change risks","docAbstract":"<p><span>Seed production in perennial plants often shows strong year-to-year variation, a phenomenon known as masting. Masting is typically adaptive and driven by weather cues that synchronize reproduction by promoting or suppressing flowering and seed set. These cues, involving temperature, precipitation, and drought, differ across species and regions, yet a global synthesis is needed. Understanding such patterns is crucial, as reproductive responses to climate interact with resource constraints to shape plant fitness under climate change. Here, we analyze climate-reproduction relationships in 746 populations of 331 species worldwide using moving-window methods. We find that temperature is the dominant cue for reproductive investment, though its influence is weaker in the wettest and driest climates. In temperate and boreal regions, reproduction is most often linked to warmer conditions, whereas in the tropics, reproduction is disproportionately linked to cooler temperatures. Therefore, we expect rising temperatures to increase reproductive failures in the tropics, but to reduce interannual variability in temperate and boreal zones as favorable cues become more frequent. These results confirm long-standing theoretical predictions and provide a global framework for evaluating climate change risks to mast seeding.</span></p>","language":"English","publisher":"Nature","doi":"10.1038/s41467-025-64300-6","usgsCitation":"Journé, V., Kelly, D., Hacket-Pain, A., Pearse, I.S., Szymkiowak, J., Foest, J., Kondrat, K., Oberklammer, I., Pesendorfer, M.B., Satake, A., and Bogdziewicz, M., 2025, Weather drivers of reproductive variability in perennial plants and their implications for climate change risks: Nature Communications, v. 16, 9226, 12 p., https://doi.org/10.1038/s41467-025-64300-6.","productDescription":"9226, 12 p.","ipdsId":"IP-173182","costCenters":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"links":[{"id":497398,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1038/s41467-025-64300-6","text":"Publisher Index Page"},{"id":497193,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"16","noUsgsAuthors":false,"publicationDate":"2025-10-17","publicationStatus":"PW","contributors":{"authors":[{"text":"Journé, Valentin","contributorId":268830,"corporation":false,"usgs":false,"family":"Journé","given":"Valentin","affiliations":[{"id":55686,"text":"U Grenoble","active":true,"usgs":false}],"preferred":false,"id":951701,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Kelly, Dave","contributorId":343740,"corporation":false,"usgs":false,"family":"Kelly","given":"Dave","email":"","affiliations":[{"id":67171,"text":"U Canterbury","active":true,"usgs":false}],"preferred":false,"id":951702,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Hacket-Pain, Andrew","contributorId":343772,"corporation":false,"usgs":false,"family":"Hacket-Pain","given":"Andrew","email":"","affiliations":[{"id":65475,"text":"U Liverpool","active":true,"usgs":false}],"preferred":false,"id":951703,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Pearse, Ian S. 0000-0001-7098-0495","orcid":"https://orcid.org/0000-0001-7098-0495","contributorId":216680,"corporation":false,"usgs":true,"family":"Pearse","given":"Ian","middleInitial":"S.","affiliations":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"preferred":true,"id":951704,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Szymkiowak, Jakob","contributorId":363458,"corporation":false,"usgs":false,"family":"Szymkiowak","given":"Jakob","affiliations":[{"id":80207,"text":"Adam Mickiewicz University","active":true,"usgs":false}],"preferred":false,"id":951705,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Foest, Jessie","contributorId":302414,"corporation":false,"usgs":false,"family":"Foest","given":"Jessie","email":"","affiliations":[{"id":65475,"text":"U Liverpool","active":true,"usgs":false}],"preferred":false,"id":951706,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Kondrat, Katarzyna","contributorId":343756,"corporation":false,"usgs":false,"family":"Kondrat","given":"Katarzyna","email":"","affiliations":[{"id":80207,"text":"Adam Mickiewicz University","active":true,"usgs":false}],"preferred":false,"id":951707,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Oberklammer, Iris","contributorId":343761,"corporation":false,"usgs":false,"family":"Oberklammer","given":"Iris","email":"","affiliations":[{"id":82187,"text":"BOKU Vienna","active":true,"usgs":false}],"preferred":false,"id":951708,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Pesendorfer, Mario B.","contributorId":201187,"corporation":false,"usgs":false,"family":"Pesendorfer","given":"Mario","email":"","middleInitial":"B.","affiliations":[],"preferred":false,"id":951709,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Satake, Akiko","contributorId":343765,"corporation":false,"usgs":false,"family":"Satake","given":"Akiko","email":"","affiliations":[{"id":82188,"text":"Kyushu U","active":true,"usgs":false}],"preferred":false,"id":951710,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Bogdziewicz, Michal","contributorId":256849,"corporation":false,"usgs":false,"family":"Bogdziewicz","given":"Michal","email":"","affiliations":[{"id":36493,"text":"USDA Forest Service","active":true,"usgs":false}],"preferred":false,"id":951711,"contributorType":{"id":1,"text":"Authors"},"rank":11}]}}
,{"id":70272454,"text":"70272454 - 2025 - Rare earth element-mineralized carbonatite in the Bear Lodge Alkaline Complex, USA—Ore genesis implications from fluid inclusion characterization","interactions":[],"lastModifiedDate":"2025-11-21T19:21:24.700308","indexId":"70272454","displayToPublicDate":"2025-10-17T08:54:42","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":732,"text":"American Journal of Science","active":true,"publicationSubtype":{"id":10}},"title":"Rare earth element-mineralized carbonatite in the Bear Lodge Alkaline Complex, USA—Ore genesis implications from fluid inclusion characterization","docAbstract":"<p><span>Rare earth element (REE) resources of the Bear Lodge Alkaline Complex, Wyoming, are hosted in variably leached carbonatite spatially related to diatreme breccia pipes. We investigated the genesis of REE and lesser-known gold resources through fluid inclusion analysis of carbonatite, fluorite breccia, and smoky quartz vein samples. Physicochemical characteristics of inclusion-trapped fluids were evaluated using petrography, microthermometry, Raman spectroscopy, decrepitate mound analysis, energy-dispersive spectroscopy, laser ablation inductively coupled plasma mass spectrometry, and noble gas isotope analysis.</span></p><p><span>Microthermometry results reveal three fluid types that affected carbonatite dikes within deeper zones that escaped near-surface, ore-grade REE enrichment: (1) high-temperature (330–432°C) magmatic fluid captured in fine-grained calcite; (2) REE-enriched alkali bicarbonate-sulfate brine; and (3) low-temperature (117–182°C) diluted magmatic or meteoric water. Multiphase brine-like inclusions contain burbankite, nahcolite, strontianite, celestine and alkali sulfate daughter crystals, linking them to early burbankite mineralization. Peripheral smoky quartz and fluorite occurrences at Smith Ridge, 1.5 km from the central carbonatite dike swarm, contain primary inclusions that are Cl-poor and rich in Na-HCO</span><sub>3</sub><span>-SO</span><sub>4</sub><span>, similar to secondary and pseudosecondary inclusions in carbonatites. Helium isotopes reveal a MORB-like source for carbonatite samples and an older crust signature at Smith Ridge, consistent with the proximal ridge-top exposures of Archean granite.</span></p><p><span>Results from this fluid inclusion study coupled with previous studies of carbonatite mineral paragenesis, show that light REEs (LREEs) were not mobilized great distances. Instead, burbankite crystallized within carbonatite from alkali bicarbonate fluids. With sodium retained in early burbankite, outward-emanating fluids enriched in potassium relative to sodium (higher K:Na) resulted in potassium–ferric iron metasomatism of silicate host rocks. This alkali fractionation was accompanied by fractionation of LREEs and heavy REEs (HREEs), with LREEs dominating the central carbonatite resources. In contrast, areas of peripheral REE mineralization at Bear Lodge are commonly characterized by higher HREE:LREE ratios. The K:Na ratio of associated fenites or alteration assemblages could be indicative of early crystallized burbankite in carbonatites and REE fractionation processes potentially leading to areas of concentrated HREEs with greater supply vulnerabilities.</span></p>","language":"English","publisher":"American Journal of Science","doi":"10.2475/001c.143992","usgsCitation":"Andersen, A.K., Olinger, D., and Bennett, M.M., 2025, Rare earth element-mineralized carbonatite in the Bear Lodge Alkaline Complex, USA—Ore genesis implications from fluid inclusion characterization: American Journal of Science, v. 325, 13, 30 p., https://doi.org/10.2475/001c.143992.","productDescription":"13, 30 p.","ipdsId":"IP-175385","costCenters":[{"id":312,"text":"Geology, Minerals, Energy, and Geophysics Science Center","active":true,"usgs":true}],"links":[{"id":496927,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.2475/001c.143992","text":"Publisher Index Page"},{"id":496794,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"South Dakota, Wyoming","otherGeospatial":"Bear Lodge Alkaline Complex","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -109.73004963771243,\n              44.08376961090204\n            ],\n            [\n              -109.73004963771243,\n              43.03710902132369\n            ],\n            [\n              -99.73805313605138,\n              43.03710902132369\n            ],\n            [\n              -99.73805313605138,\n              44.08376961090204\n            ],\n            [\n              -109.73004963771243,\n              44.08376961090204\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"325","noUsgsAuthors":false,"publicationDate":"2025-10-17","publicationStatus":"PW","contributors":{"authors":[{"text":"Andersen, Allen K. 0000-0002-6865-2561","orcid":"https://orcid.org/0000-0002-6865-2561","contributorId":217476,"corporation":false,"usgs":true,"family":"Andersen","given":"Allen","email":"","middleInitial":"K.","affiliations":[{"id":312,"text":"Geology, Minerals, Energy, and Geophysics Science Center","active":true,"usgs":true}],"preferred":true,"id":950815,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Olinger, Danielle A. 0000-0001-8375-5852 dolinger@usgs.gov","orcid":"https://orcid.org/0000-0001-8375-5852","contributorId":201968,"corporation":false,"usgs":true,"family":"Olinger","given":"Danielle A.","email":"dolinger@usgs.gov","affiliations":[{"id":171,"text":"Central Mineral and Environmental Resources Science Center","active":true,"usgs":true}],"preferred":true,"id":950816,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Bennett, Mitchell M. 0000-0001-9533-9557 mbennett@usgs.gov","orcid":"https://orcid.org/0000-0001-9533-9557","contributorId":199379,"corporation":false,"usgs":true,"family":"Bennett","given":"Mitchell","email":"mbennett@usgs.gov","middleInitial":"M.","affiliations":[{"id":35995,"text":"Geology, Geophysics, and Geochemistry Science Center","active":true,"usgs":true}],"preferred":true,"id":950817,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70272766,"text":"70272766 - 2025 - Do bighorn sheep use desert tortoise burrow spoil piles as mineral licks in southern California?","interactions":[],"lastModifiedDate":"2025-12-08T16:21:04.403623","indexId":"70272766","displayToPublicDate":"2025-10-16T10:15:00","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1092,"text":"Bulletin, Southern California Academy of Sciences","active":true,"publicationSubtype":{"id":10}},"title":"Do bighorn sheep use desert tortoise burrow spoil piles as mineral licks in southern California?","docAbstract":"<p><span>In a previous study, bighorn sheep (</span><i>Ovis canadensis</i><span>) were periodically photographed by trail cameras when they visited desert tortoise (</span><i>Gopherus agassizii</i><span>) burrows in the San Bernardino Mountains near Palm Springs, California, USA. The authors suggested that bighorn sheep may utilize the excavated spoil material from burrows as a mineral lick. To test that supposition, we collected soil samples from the spoil piles and undisturbed surface soil up to 1 m away at two desert tortoise study sites with bighorn sheep at the aforementioned site and another nearby site. We hypothesized that sodium concentrations would be greater in spoil than in nearby surface soil samples. Common major cations were quantified in soil samples using inductively coupled plasma-mass spectrometry following microwave-assisted digestion to solubilize the fraction of elements that could become biologically or environmentally available. Mean sodium concentrations were greater in burrow spoil samples than in undisturbed soil samples at both sites, likely due to aqueous leaching of sodium from surface to subsurface soil horizons. Although we did not collect evidence of geophagy by bighorn sheep, the behavior is well known. However, trail camera photographs of bighorn sheep with their head next to the entrance of tortoise burrows suggests that they may periodically utilize sodium and other elements brought to the surface by desert tortoises that are otherwise unavailable to bighorn sheep on the surface.</span></p>","language":"English","publisher":"Southern California Academy of Sciences","doi":"10.3160/0038-3872-124.2.55","collaboration":"Bureau of Land Management, Coachella Valley Conservation Commission","usgsCitation":"Lovich, J.E., Cleveland, D.M., Yackulic, C., Cummings, K.L., Puffer, M.R., Bechtel, M.J., Tracy, C.R., Hoese, W.J., Avila, G., Peukert, M., and Hubbard, S., 2025, Do bighorn sheep use desert tortoise burrow spoil piles as mineral licks in southern California?: Bulletin, Southern California Academy of Sciences, v. 124, no. 2, p. 55-66, https://doi.org/10.3160/0038-3872-124.2.55.","productDescription":"12 p.","startPage":"55","endPage":"66","ipdsId":"IP-165518","costCenters":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true},{"id":568,"text":"Southwest Biological Science Center","active":true,"usgs":true}],"links":[{"id":497198,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"California","city":"Palm Springss","otherGeospatial":"San Bernardino Mountains","volume":"124","issue":"2","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Lovich, Jeffrey E. 0000-0002-7789-2831 jeffrey_lovich@usgs.gov","orcid":"https://orcid.org/0000-0002-7789-2831","contributorId":458,"corporation":false,"usgs":true,"family":"Lovich","given":"Jeffrey","email":"jeffrey_lovich@usgs.gov","middleInitial":"E.","affiliations":[{"id":568,"text":"Southwest Biological Science Center","active":true,"usgs":true},{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"preferred":true,"id":951642,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Cleveland, Danielle M. 0000-0003-3880-4584 dcleveland@usgs.gov","orcid":"https://orcid.org/0000-0003-3880-4584","contributorId":187471,"corporation":false,"usgs":true,"family":"Cleveland","given":"Danielle","email":"dcleveland@usgs.gov","middleInitial":"M.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":951643,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Yackulic, Charles B. 0000-0001-9661-0724","orcid":"https://orcid.org/0000-0001-9661-0724","contributorId":218825,"corporation":false,"usgs":true,"family":"Yackulic","given":"Charles","middleInitial":"B.","affiliations":[{"id":568,"text":"Southwest Biological Science Center","active":true,"usgs":true}],"preferred":true,"id":951644,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Cummings, Kristy L. 0000-0002-8316-5059","orcid":"https://orcid.org/0000-0002-8316-5059","contributorId":202061,"corporation":false,"usgs":true,"family":"Cummings","given":"Kristy","email":"","middleInitial":"L.","affiliations":[{"id":568,"text":"Southwest Biological Science Center","active":true,"usgs":true}],"preferred":true,"id":951645,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Puffer, Michele R. 0000-0003-4957-0963","orcid":"https://orcid.org/0000-0003-4957-0963","contributorId":225575,"corporation":false,"usgs":true,"family":"Puffer","given":"Michele","email":"","middleInitial":"R.","affiliations":[{"id":568,"text":"Southwest Biological Science Center","active":true,"usgs":true}],"preferred":true,"id":951646,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Bechtel, Molly J.","contributorId":363413,"corporation":false,"usgs":false,"family":"Bechtel","given":"Molly","middleInitial":"J.","affiliations":[{"id":86695,"text":"College of Integrative Sciences and Arts, Arizona State University, 6073 S. Backus Mall, Mesa, Arizona","active":true,"usgs":false}],"preferred":false,"id":951647,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Tracy, Christopher R.","contributorId":363414,"corporation":false,"usgs":false,"family":"Tracy","given":"Christopher","middleInitial":"R.","affiliations":[{"id":86697,"text":"Philip L. Boyd Deep Canyon Desert Research Center, University of California Riverside, 54900 Desert Research Trail, Indian Wells, California","active":true,"usgs":false}],"preferred":false,"id":951648,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Hoese, William J.","contributorId":345685,"corporation":false,"usgs":false,"family":"Hoese","given":"William","email":"","middleInitial":"J.","affiliations":[{"id":82694,"text":"California State University Fullerton, 800 North State College Blvd. Fullerton California 92831 USA","active":true,"usgs":false}],"preferred":false,"id":951649,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Avila, Gerardo","contributorId":345684,"corporation":false,"usgs":false,"family":"Avila","given":"Gerardo","email":"","affiliations":[{"id":82694,"text":"California State University Fullerton, 800 North State College Blvd. Fullerton California 92831 USA","active":true,"usgs":false}],"preferred":false,"id":951650,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Peukert, Megan","contributorId":345683,"corporation":false,"usgs":false,"family":"Peukert","given":"Megan","email":"","affiliations":[{"id":82694,"text":"California State University Fullerton, 800 North State College Blvd. Fullerton California 92831 USA","active":true,"usgs":false}],"preferred":false,"id":951651,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Hubbard, Samantha","contributorId":363416,"corporation":false,"usgs":false,"family":"Hubbard","given":"Samantha","affiliations":[{"id":86699,"text":"California State University Fullerton, 800 North State College Blvd. Fullerton California","active":true,"usgs":false}],"preferred":false,"id":951652,"contributorType":{"id":1,"text":"Authors"},"rank":11}]}}
,{"id":70273181,"text":"70273181 - 2025 - Tracing invasion routes of Cuban treefrogs into Louisiana using mitochondrial DNA","interactions":[],"lastModifiedDate":"2025-12-18T15:57:48.38176","indexId":"70273181","displayToPublicDate":"2025-10-16T09:49:43","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":17102,"text":"Frontiers in Amphibian and Reptile Science","active":true,"publicationSubtype":{"id":10}},"title":"Tracing invasion routes of Cuban treefrogs into Louisiana using mitochondrial DNA","docAbstract":"<p><span>Understanding the origin and spread of invasive species is critical for predicting when and where new introductions will establish, and impact native species. However, due to the complexity of contributing factors such as multiple introductions, dispersal method, genetic admixture in founding populations, and variable propagule pressure, genetic patterns observed in invasive species may not always conform to a single theoretical expectation. Cuban treefrogs (</span><i>Osteopilus septentrionalis</i><span>) are invasive in peninsular Florida and sporadically in the Florida panhandle. Though&nbsp;</span><i>O. septentrionalis</i><span>&nbsp;has been occasionally reported in Louisiana since the 1990s, established populations were not present until the discovery of a breeding population in New Orleans in 2017. In this study we investigated the source of this novel population using existing and newly generated cytochrome B (cyt-b) mitochondrial gene sequences from the native and invasive range of&nbsp;</span><i>O. septentrionalis</i><span>. We recovered a total of 14 cyt-b haplotypes, nine novel and five previously published. Within the 95 Louisiana invasion samples, we recovered seven haplotypes including five novel haplotypes. The haplotypes most common in Louisiana were shared exclusively with west and east Florida localities in central Florida, indicating a possible source population. The presence of haplotypes private to the Louisiana locality suggests other unsampled localities may also be contributing to the Louisiana settlement. Metrics of genetic diversity across native and invasive localities did not significantly differ. Furthermore, the Louisiana samples had higher genetic diversity than any single location sampled within Florida. Thus, genetic diversity and our haplotype connectivity suggest the Louisiana population is derived from multiple introductions from Florida. Our study highlights how demographic and genetic analyses can be utilized to understand the source and future expansion potential of invasive populations.</span></p>","language":"English","publisher":"Frontiers Media","doi":"10.3389/famrs.2025.1646714","usgsCitation":"Brosnan, E.B., Paniagua Torres, K.A., Martin, K.R., Atkinson, M.S., Glorioso, B., Waddle, H., Mendyk, R.W., and Savage, A.E., 2025, Tracing invasion routes of Cuban treefrogs into Louisiana using mitochondrial DNA: Frontiers in Amphibian and Reptile Science, v. 3, 1646714, 13 p., https://doi.org/10.3389/famrs.2025.1646714.","productDescription":"1646714, 13 p.","ipdsId":"IP-180577","costCenters":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"links":[{"id":497742,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.3389/famrs.2025.1646714","text":"Publisher Index 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B.","contributorId":364385,"corporation":false,"usgs":false,"family":"Brosnan","given":"Erin","middleInitial":"B.","affiliations":[{"id":18879,"text":"University of Central Florida","active":true,"usgs":false}],"preferred":false,"id":952617,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Paniagua Torres, Karen A.","contributorId":364386,"corporation":false,"usgs":false,"family":"Paniagua Torres","given":"Karen","middleInitial":"A.","affiliations":[{"id":6738,"text":"The Pennsylvania State University","active":true,"usgs":false}],"preferred":false,"id":952618,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Martin, Katerine R.","contributorId":364388,"corporation":false,"usgs":false,"family":"Martin","given":"Katerine","middleInitial":"R.","affiliations":[{"id":18879,"text":"University of Central Florida","active":true,"usgs":false}],"preferred":false,"id":952619,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Atkinson, Matthew 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,{"id":70272110,"text":"70272110 - 2025 - Quantifying benthic flux of Mysis biomass through diel vertical migration at the ecosystem scale","interactions":[],"lastModifiedDate":"2025-11-18T14:15:09.847931","indexId":"70272110","displayToPublicDate":"2025-10-16T09:14:51","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1478,"text":"Ecosystems","active":true,"publicationSubtype":{"id":10}},"displayTitle":"Quantifying benthic flux of <i>Mysis</i> biomass through diel vertical migration at the ecosystem scale","title":"Quantifying benthic flux of Mysis biomass through diel vertical migration at the ecosystem scale","docAbstract":"<p><i>Mysis diluviana</i><span>&nbsp;is a macroinvertebrate that couples benthic and pelagic habitats on a daily timescale through diel vertical migration (DVM). However, quantifying how much&nbsp;</span><i>Mysis</i><span>&nbsp;biomass is exchanged between benthic and pelagic habitats at an ecosystem scale is difficult because of sampling limitations and variability in&nbsp;</span><i>Mysis</i><span>&nbsp;DVM behavior related to light and depth. Although&nbsp;</span><i>Mysis</i><span>&nbsp;are benthic-pelagic migrators, a portion remains pelagic during the day offshore in Lake Ontario, partially contradicting the assumption of population-level DVM over deep areas. To estimate the amount of biomass transferred from benthic to pelagic habitat via DVM in Lake Ontario, we estimated the portion of pelagic biomass at night originating from benthic habitat as the difference between night and day pelagic estimates from net tows along a bathymetric depth gradient. We then modeled the portion as a function of depth, extrapolated these depth-dependent estimates to an existing lake wide night-pelagic dataset, and summed amounts across depth strata. We estimated more biomass was transferred from benthic to pelagic habitat at intermediate lake depths (100–160&nbsp;m) despite greater offshore (&gt; 180&nbsp;m) night-pelagic biomass. Our results suggest ways to improve estimates of&nbsp;</span><i>Mysis</i><span>&nbsp;habitat coupling and how to account for important factors such as depth and light for modeling&nbsp;</span><i>Mysis</i><span>&nbsp;DVM behavior at the population- and ecosystem-levels.</span></p>","language":"English","publisher":"Springer Nature","doi":"10.1007/s10021-025-01015-1","usgsCitation":"O’Malley, B., Hoffman, G.W., Chapina, R.J., Stockwell, J.D., and Farrell, C.J., 2025, Quantifying benthic flux of Mysis biomass through diel vertical migration at the ecosystem scale: Ecosystems, v. 28, 67, 13 p., https://doi.org/10.1007/s10021-025-01015-1.","productDescription":"67, 13 p.","ipdsId":"IP-167376","costCenters":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"links":[{"id":496727,"rank":2,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1007/s10021-025-01015-1","text":"Publisher Index Page"},{"id":496554,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"Canada, United States","otherGeospatial":"Lake Ontario","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -79.61072712278828,\n              43.75409616423798\n            ],\n            [\n              -79.97779309400795,\n              43.164112982755455\n            ],\n            [\n              -76.39135259634553,\n              43.23247864987255\n            ],\n            [\n              -75.98504893915495,\n              43.96806881864106\n            ],\n            [\n              -76.35610083371708,\n              44.349259569402875\n            ],\n            [\n              -79.61072712278828,\n              43.75409616423798\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"28","noUsgsAuthors":false,"publicationDate":"2025-10-16","publicationStatus":"PW","contributors":{"authors":[{"text":"O’Malley, Brian 0000-0001-5035-3080 bomalley@usgs.gov","orcid":"https://orcid.org/0000-0001-5035-3080","contributorId":216560,"corporation":false,"usgs":true,"family":"O’Malley","given":"Brian","email":"bomalley@usgs.gov","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":950100,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Hoffman, Georgia Wende 0000-0002-9769-0436","orcid":"https://orcid.org/0000-0002-9769-0436","contributorId":334262,"corporation":false,"usgs":true,"family":"Hoffman","given":"Georgia","email":"","middleInitial":"Wende","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":950101,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Chapina, Rosaura J.","contributorId":362141,"corporation":false,"usgs":false,"family":"Chapina","given":"Rosaura","middleInitial":"J.","affiliations":[{"id":86479,"text":"Univ of Vermont","active":true,"usgs":false}],"preferred":false,"id":950102,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Stockwell, Jason D.","contributorId":362142,"corporation":false,"usgs":false,"family":"Stockwell","given":"Jason","middleInitial":"D.","affiliations":[{"id":86479,"text":"Univ of Vermont","active":true,"usgs":false}],"preferred":false,"id":950103,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Farrell, Collin J.","contributorId":362143,"corporation":false,"usgs":false,"family":"Farrell","given":"Collin","middleInitial":"J.","affiliations":[{"id":6661,"text":"US Fish and Wildlife Service","active":true,"usgs":false}],"preferred":false,"id":950104,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70272149,"text":"70272149 - 2025 - Emerging investigator series: Post-wildfire sediment geochemical characterization reveals manganese reactivity and a potential link to water quality impairment in the Gallinas Creek watershed, New Mexico","interactions":[],"lastModifiedDate":"2025-11-18T15:18:48.890592","indexId":"70272149","displayToPublicDate":"2025-10-16T09:12:45","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1566,"text":"Environmental Science: Processes and Impacts","active":true,"publicationSubtype":{"id":10}},"title":"Emerging investigator series: Post-wildfire sediment geochemical characterization reveals manganese reactivity and a potential link to water quality impairment in the Gallinas Creek watershed, New Mexico","docAbstract":"<p><span>Water quality post-wildfire is often impaired by increased turbidity and elevated concentrations of elements such as manganese (Mn) and iron (Fe). Precipitation events exacerbate these issues, due in part to increased erosion and transport of sediment from hillslopes to surface water. Both Mn and Fe are major redox-active elements in sediments that drive a variety of biogeochemical cycles, precipitate adsorptive phases, and can themselves be drinking water contaminants. By investigating Mn and Fe sediment geochemistry in post-wildfire sediment deposits, related water quality hazards can be assessed. To establish and strengthen this connection, we analyzed the geochemistry of sediment deposits and surface water in the Gallinas Creek watershed, New Mexico over 1.5 years post-wildfire. Analyses included particle size analysis, water extractions, sequential extractions and aqua regia extractions to determine metal partitioning in sediment deposits. Data demonstrate Mn concentrations were distributed across labile and reactive fractions, such as the exchangeable and oxyhydroxide fractions, while Fe concentrations were mainly associated with the residual fraction. Manganese concentrations in aqua regia extractions and several fractions of sequential extractions were also strongly and significantly correlated with fine-grained sediment while the same pools of Fe concentrations were not. Dissolved Mn concentrations in surface water were elevated (&gt;50 μg L</span><small><sup>−1</sup></small><span>) multiple times over the 1.5 years post-wildfire, highlighting a relationship between sediment geochemistry and water quality. This work shows Mn in sediments mobilized post-wildfire has an influence on water quality and highlights how further investigation into Mn sediment redox processes and mineralogy post-wildfire can inform risk assessments and resource management.</span></p>","language":"English","publisher":"Royal Society of Chemistry","doi":"10.1039/d5em00326a","usgsCitation":"Tomaszewski, E.J., Murphy, S.F., Blake, J., Hornberger, M.I., and Clark, G.D., 2025, Emerging investigator series: Post-wildfire sediment geochemical characterization reveals manganese reactivity and a potential link to water quality impairment in the Gallinas Creek watershed, New Mexico: Environmental Science: Processes and Impacts, v. 27, p. 3551-3571, https://doi.org/10.1039/d5em00326a.","productDescription":"21 p.","startPage":"3551","endPage":"3571","ipdsId":"IP-178099","costCenters":[{"id":472,"text":"New Mexico Water Science Center","active":true,"usgs":true},{"id":5050,"text":"WY-MT Water Science Center","active":true,"usgs":true},{"id":37277,"text":"WMA - Earth System Processes Division","active":true,"usgs":true},{"id":49175,"text":"Geology, Energy & Minerals Science Center","active":true,"usgs":true}],"links":[{"id":496582,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"New Mexico","otherGeospatial":"Gallinas Creek watershed","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -105.42908209638928,\n              35.722278130026694\n            ],\n            [\n              -105.42908209638928,\n              35.59597276465334\n            ],\n            [\n              -105.2152474885499,\n              35.59597276465334\n            ],\n            [\n              -105.2152474885499,\n              35.722278130026694\n            ],\n            [\n              -105.42908209638928,\n              35.722278130026694\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"27","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Tomaszewski, Elizabeth Jean 0000-0001-5491-3989","orcid":"https://orcid.org/0000-0001-5491-3989","contributorId":362253,"corporation":false,"usgs":true,"family":"Tomaszewski","given":"Elizabeth","middleInitial":"Jean","affiliations":[{"id":49175,"text":"Geology, Energy & Minerals Science Center","active":true,"usgs":true}],"preferred":true,"id":950241,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Murphy, Sheila F. 0000-0002-5481-3635 sfmurphy@usgs.gov","orcid":"https://orcid.org/0000-0002-5481-3635","contributorId":1854,"corporation":false,"usgs":true,"family":"Murphy","given":"Sheila","email":"sfmurphy@usgs.gov","middleInitial":"F.","affiliations":[{"id":37277,"text":"WMA - Earth System Processes Division","active":true,"usgs":true},{"id":5044,"text":"National Research Program - Central Branch","active":true,"usgs":true}],"preferred":true,"id":950242,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Blake, Johanna 0000-0003-4667-0096","orcid":"https://orcid.org/0000-0003-4667-0096","contributorId":217272,"corporation":false,"usgs":true,"family":"Blake","given":"Johanna","affiliations":[{"id":472,"text":"New Mexico Water Science Center","active":true,"usgs":true}],"preferred":true,"id":950243,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Hornberger, Michelle I. 0000-0002-7787-3446 mhornber@usgs.gov","orcid":"https://orcid.org/0000-0002-7787-3446","contributorId":1037,"corporation":false,"usgs":true,"family":"Hornberger","given":"Michelle","email":"mhornber@usgs.gov","middleInitial":"I.","affiliations":[{"id":37277,"text":"WMA - Earth System Processes Division","active":true,"usgs":true}],"preferred":true,"id":950244,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Clark, Gregory D. 0000-0003-0066-8193 gmclark@usgs.gov","orcid":"https://orcid.org/0000-0003-0066-8193","contributorId":224364,"corporation":false,"usgs":true,"family":"Clark","given":"Gregory","email":"gmclark@usgs.gov","middleInitial":"D.","affiliations":[{"id":5050,"text":"WY-MT Water Science Center","active":true,"usgs":true}],"preferred":true,"id":950245,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70273394,"text":"70273394 - 2025 - The Southwestern Pond Turtle (Actinemys pallida) in Baja California, Mexico: New localities and persistent threats","interactions":[],"lastModifiedDate":"2026-01-12T15:21:37.652813","indexId":"70273394","displayToPublicDate":"2025-10-16T09:04:26","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1136,"text":"Bulletin of the Southern California Academy of Sciences","active":true,"publicationSubtype":{"id":10}},"title":"The Southwestern Pond Turtle (Actinemys pallida) in Baja California, Mexico: New localities and persistent threats","docAbstract":"<p><span>The Southwestern Pond Turtle (</span><i>Actinemys pallida</i><span>), the only native freshwater turtle in Baja California, is experiencing alarming population declines, echoing global patterns observed in freshwater turtles. We conducted comprehensive field surveys across the major drainages of northwestern Baja California to delineate the species' current distribution, identify critical threats to its persistence, and provide guidance for conservation actions. We documented the continued presence of&nbsp;</span><i>A. pallida</i><span>&nbsp;at 27 sites across 10 watersheds, ranging from sea level to 1,525 m in elevation. These include nine historically known sites and 18 newly recorded localities. The most pervasive threats we identified were habitat degradation, the proliferation of invasive aquatic species, and unsustainable water extraction. Despite these pressures, our findings confirm that&nbsp;</span><i>A. pallida</i><span>&nbsp;still occupies much of its historical range. However, urgent ecological research is needed to inform evidence-based strategies that ensure the long-term viability of this imperiled species.</span></p>","language":"English","publisher":"Southern California Academy of Sciences","doi":"10.3160/0038-3872-124.2.67","usgsCitation":"Valdez-Villavicencio, J.H., Peralta-García, A., Hollingsworth, B.D., Galina-Tessaro, P., Fisher, R.D., Alvarez, J.A., and Lara-Resendiz, R.A., 2025, The Southwestern Pond Turtle (Actinemys pallida) in Baja California, Mexico: New localities and persistent threats: Bulletin of the Southern California Academy of Sciences, v. 124, no. 2, p. 67-79, https://doi.org/10.3160/0038-3872-124.2.67.","productDescription":"13 p.","startPage":"67","endPage":"79","ipdsId":"IP-130361","costCenters":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"links":[{"id":498547,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"Mexico","state":"Baja California","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -117,\n              32.333\n            ],\n            [\n              -117,\n              29.25\n            ],\n            [\n              -114.75,\n              29.25\n            ],\n            [\n              -114.75,\n              32.333\n            ],\n            [\n              -117,\n              32.333\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"124","issue":"2","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Valdez-Villavicencio, Jorge H.","contributorId":364990,"corporation":false,"usgs":false,"family":"Valdez-Villavicencio","given":"Jorge","middleInitial":"H.","affiliations":[{"id":87026,"text":"Conservación de Fauna del Noroeste, A.C., Ensenada Baja California, Mexico","active":true,"usgs":false}],"preferred":false,"id":953563,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Peralta-García, Anny","contributorId":303347,"corporation":false,"usgs":false,"family":"Peralta-García","given":"Anny","affiliations":[{"id":65771,"text":"Conservación de Fauna del Noroeste A.C., Ensenada, México","active":true,"usgs":false}],"preferred":false,"id":953564,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Hollingsworth, Bradford D.","contributorId":364991,"corporation":false,"usgs":false,"family":"Hollingsworth","given":"Bradford","middleInitial":"D.","affiliations":[{"id":16175,"text":"San Diego Natural History Museum","active":true,"usgs":false}],"preferred":false,"id":953566,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Galina-Tessaro, Patricia","contributorId":169079,"corporation":false,"usgs":false,"family":"Galina-Tessaro","given":"Patricia","email":"","affiliations":[{"id":25409,"text":"Centro de Investigaciones Biologicas del Roroeste, La Paz, Mexico","active":true,"usgs":false}],"preferred":false,"id":953565,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Fisher, Robert D. 0000-0002-2956-3240 rdfisher@usgs.gov","orcid":"https://orcid.org/0000-0002-2956-3240","contributorId":3913,"corporation":false,"usgs":true,"family":"Fisher","given":"Robert","email":"rdfisher@usgs.gov","middleInitial":"D.","affiliations":[{"id":531,"text":"Patuxent Wildlife Research Center","active":true,"usgs":true}],"preferred":true,"id":953567,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Alvarez, Jeff A.","contributorId":102404,"corporation":false,"usgs":true,"family":"Alvarez","given":"Jeff","email":"","middleInitial":"A.","affiliations":[],"preferred":false,"id":953600,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Lara-Resendiz, R. 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,{"id":70273287,"text":"70273287 - 2025 - Drought intensity and duration interact to magnify losses in primary productivity","interactions":[],"lastModifiedDate":"2026-01-14T15:06:37.661143","indexId":"70273287","displayToPublicDate":"2025-10-16T08:38:17","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3338,"text":"Science","active":true,"publicationSubtype":{"id":10}},"title":"Drought intensity and duration interact to magnify losses in primary productivity","docAbstract":"<p><span>As droughts become longer and more intense, impacts on terrestrial primary productivity are expected to increase progressively. Yet, some ecosystems appear to acclimate to multiyear drought, with constant or diminishing reductions in productivity as drought duration increases. We quantified the combined effects of drought duration and intensity on aboveground productivity in 74 grasslands and shrublands distributed globally. Ecosystem acclimation with multiyear drought was observed overall, except when droughts were extreme (i.e., ≤1-in-100-year likelihood of occurrence). Productivity losses after four consecutive years of extreme drought increased by ~2.5-fold compared with those of the first year. These results portend a foundational shift in ecosystem behavior if drought duration and intensity increase, from maintenance of reduced functioning over time to progressive and profound losses of productivity when droughts are extreme.</span></p>","language":"English","publisher":"American Association for the Advancement of Science","doi":"10.1126/science.ads8144","usgsCitation":"Ohlert, T., Smith, M.D., Collins, S.L., Knapp, A.K., Dukes, J.S., Sala, O.E., Wilkins, K.D., Munson, S.M., Anderson, M.I., Avolio, M.L., Chen, A., Hayden, M.T., Holdrege, M.C., Slette, I.J., Wilfahrt, P.A., Beier, C., Fraser, L.H., Jentsch, A., Loik, M.E., Luo, Y., Maestre, F.T., Phillips, R.P., Power, S.A., Yahdjian, L., Yu, Q., Chen, A., Felton, A.J., Gherardi, L.A., Lyon, N.J., Abdoli, H., Abedi, M., Alberti, J., Arroyo, A.I., Asbjornsen, H., Auge, H., Bachle, S., Bahn, M., Bartholomew, D.C., Batbaatar, A., Bauerle, T.L., Beard, K.H., Behn, K., Beil, I., Biancari, L., Blindow, I., Bondaruk, V.F., Borer, E.T., Bork, E.W., Bruschetti, C.M., Byrne, K.M., Cahill, J.F., Calvo, D.A., Carbognani, M., Carlyle, C.N., Castillioni, K., Castillo-Garcia, M., Chandregowda, M.H., Chang, S.X., Chieppa, J., Churchill, A.C., Cianciaruso, M.V., Cordeiro, A.L., Cousins, S., Cusack, D.F., Dahlke, S., Daleo, P., Dietterich, L.H., Dubbert, M., Eisenhauer, N., Forte, T.G., Funk, F.A., Galiano, D., Greenville, A.C., Han, L., Haugum, S.V., Hautier, Y., Hector, A., Henry, H.A., Hoss, D., Isbell, F., Jordan, S.E., Ke, Y., Kelly, E.F., Koerner, S.E., Kreyling, J., Kroel-Dulay, G., Kröpfl, A.I., Kübert, A., Kulmatiski, A., Lamb, E.G., Larsen, K.S., Lee, S.R., Limbu, S.P., Linstädter, A., Liu, S., Longo, G., Loydi, A., Luan, J., Lubbe, F.C., Malyshev, A.V., McIntire, C.D., Metcalfe, D.B., Mokoka, M.V., Mori, A.S., Mudongo, E., Newman, G.S., Nielsen, U.N., Ochoa-Hueso, R., O'Connor, R.C., Ogaya, R., Oñatibia, G.R., Orban, I., Osborne, B.B., Otfinowski, R., Pärtel, M., Pascual, J., Peñuelas, J., Peri, P.L., Pescador, D.S., Peter, G., Petraglia, A., Picon-Cochard, C., Pillar, V.D., Piñeiro-Guerra, J.M., Ploughe, L.W., Plowes, R.M., Portales-Reyes, C., Prober, S.M., Pueyo, Y., Rahmati, G., Reed, S.C., Rodríguez, D.A., Rogers, W.E., Roscher, C., Rowley, D.W., Sánchez, A.M., Santos, B.A., Schellenberg, M.P., Scherer-Lorenzen, M., Seabloom, E.W., Shen, R., Shi, B., Souza, L., Stampfli, A., Standish, R.J., Sternberg, M., Sun, W., Sünnemann, M., Tedder, M., Terry, T., Thorvaldsen, P., Tielbörger, K., Tissink, M., Vadeboncoeur, M.A., Valdecantos, A., van den Brink, L., Vandvik, V., Velle, L.G., Wanke, S., Wardle, G.M., Wei, C., Werner, C., Wiehl, G., Williams, J.L., Wolf, A.A., Wu, H., Xu, C., Yang, X., Yost, J.L., Young, A.L., Yue, P., Zeberio, J.M., Zeiter, M., Zhang, H., Zhu, J., and Zuo, X., 2025, Drought intensity and duration interact to magnify losses in primary productivity: Science, v. 390, no. 6770, p. 284-289, https://doi.org/10.1126/science.ads8144.","productDescription":"6 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Biology, University of New Mexico, Albuquerque, NM, USA","active":true,"usgs":false}],"preferred":false,"id":953702,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Smith, Melinda D.","contributorId":364670,"corporation":false,"usgs":false,"family":"Smith","given":"Melinda","middleInitial":"D.","affiliations":[{"id":86889,"text":"Department of Biology and Graduate Degree Program in Ecology, Colorado State University, CO 80523, USA","active":true,"usgs":false}],"preferred":false,"id":953026,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Collins, Scott L.","contributorId":364671,"corporation":false,"usgs":false,"family":"Collins","given":"Scott","middleInitial":"L.","affiliations":[{"id":7164,"text":"Department of Biology, University of New Mexico, Albuquerque, NM 87131 USA","active":true,"usgs":false}],"preferred":false,"id":953027,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Knapp, Alan 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,{"id":70273934,"text":"70273934 - 2025 - Correspondence between satellite-derived and long-term field observations of vegetation cover at Great Basin experimental treatments.","interactions":[],"lastModifiedDate":"2026-02-18T15:21:19.569373","indexId":"70273934","displayToPublicDate":"2025-10-16T08:14:43","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":6002,"text":"Rangeland Ecology & Management","active":true,"publicationSubtype":{"id":10}},"title":"Correspondence between satellite-derived and long-term field observations of vegetation cover at Great Basin experimental treatments.","docAbstract":"<p><span id=\"_mce_caret\" data-mce-bogus=\"1\" data-mce-type=\"format-caret\"><span>Vegetation treatments are frequently utilized in Western US rangelands to reduce woody plant cover in sagebrush stands threatened by increased wildfire risk and in pinyon-juniper woodlands expanding into formerly high-value sagebrush habitats. Despite widespread use of these treatments, monitoring data to evaluate long-term vegetation responses are often insufficient or absent. Long-term field experiments and remote-sensing based vegetation data may be complementary for assessing treatment effectiveness across temporal and spatial scales. The SageSTEP project experimentally implemented treatments at numerous sites across the Intermountain West and monitored the subsequent response of vegetation cover components with 15+ yr of field observations. However, while pretreatment data were collected in the year of implementation, long-term observations of pretreatment vegetation conditions are lacking in the SageSTEP database. Remote-sensing based time-series maps (1985–2023) of vegetation cover from Rangeland Condition Monitoring Assessment and Projection (RCMAP) could fill temporal gaps in monitoring data and scale findings across broader extents. We evaluate the relationship between pretreatment vegetation cover in the RCMAP data and the post-treatment response in both the RCMAP and field observations. Additionally, we explore the correspondence between SageSTEP field observations and RCMAP at various scales, and examine key factors related to the strength of relationships. Overall, SageSTEP and RCMAP data show a similar direction of treatment effect for each component, and to a lesser extent the magnitude of effect. SageSTEP and RCMAP data tended to agree most strongly where treatment effects were strong; when averaged across broader spatial scales; and for components such as tree and bare ground that are more easily distinguished spectrally. Remote sensing tools such as RCMAP, in combination with field-based climate and vegetation observations, can help assess postdisturbance recovery trajectories and facilitate regional decision-making around treatment alternatives, fire risk reduction, and protection of critical habitats.</span></span></p>","language":"English","publisher":"Elsevier","doi":"10.1016/j.rama.2025.09.007","usgsCitation":"Rigge, M.B., Case, M.F., Shaff, S.E., Ellsworth, L., Bunde, B., and Postma, K., 2025, Correspondence between satellite-derived and long-term field observations of vegetation cover at Great Basin experimental treatments.: Rangeland Ecology & Management, v. 103, p. 341-355, https://doi.org/10.1016/j.rama.2025.09.007.","productDescription":"15 p.","startPage":"341","endPage":"355","ipdsId":"IP-167032","costCenters":[{"id":222,"text":"Earth Resources Observation and Science (EROS) Center","active":true,"usgs":true}],"links":[{"id":500252,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1016/j.rama.2025.09.007","text":"Publisher Index Page"},{"id":500139,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","otherGeospatial":"Great Basin","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -117.92270708025353,\n              48.478358686610875\n            ],\n            [\n              -117.92270708025353,\n              36.755797428874644\n            ],\n            [\n              -107.75776722181647,\n              36.755797428874644\n            ],\n            [\n              -107.75776722181647,\n              48.478358686610875\n            ],\n            [\n              -117.92270708025353,\n              48.478358686610875\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"103","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Rigge, Matthew B. 0000-0003-4471-8009 mrigge@usgs.gov","orcid":"https://orcid.org/0000-0003-4471-8009","contributorId":751,"corporation":false,"usgs":true,"family":"Rigge","given":"Matthew","email":"mrigge@usgs.gov","middleInitial":"B.","affiliations":[{"id":222,"text":"Earth Resources Observation and Science (EROS) Center","active":true,"usgs":true},{"id":223,"text":"Earth Resources Observation and Science (EROS) Center (Geography)","active":false,"usgs":true}],"preferred":true,"id":955806,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Case, Madelon Florence 0000-0003-4830-5324","orcid":"https://orcid.org/0000-0003-4830-5324","contributorId":329634,"corporation":false,"usgs":true,"family":"Case","given":"Madelon","email":"","middleInitial":"Florence","affiliations":[{"id":290,"text":"Forest and Rangeland Ecosystem Science Center","active":false,"usgs":true}],"preferred":true,"id":955807,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Shaff, Scott E. 0000-0001-8978-9260","orcid":"https://orcid.org/0000-0001-8978-9260","contributorId":219813,"corporation":false,"usgs":true,"family":"Shaff","given":"Scott","middleInitial":"E.","affiliations":[{"id":290,"text":"Forest and Rangeland Ecosystem Science Center","active":false,"usgs":true}],"preferred":true,"id":955808,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Ellsworth, Lisa M.","contributorId":328375,"corporation":false,"usgs":false,"family":"Ellsworth","given":"Lisa M.","affiliations":[{"id":6680,"text":"Oregon State University","active":true,"usgs":false}],"preferred":false,"id":955809,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Bunde, Brett 0000-0003-0228-779X","orcid":"https://orcid.org/0000-0003-0228-779X","contributorId":288364,"corporation":false,"usgs":false,"family":"Bunde","given":"Brett","affiliations":[{"id":61731,"text":"KBR","active":true,"usgs":false}],"preferred":false,"id":955810,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Postma, Kory 0000-0001-8058-498X","orcid":"https://orcid.org/0000-0001-8058-498X","contributorId":293879,"corporation":false,"usgs":false,"family":"Postma","given":"Kory","affiliations":[{"id":63548,"text":"KBRwyle, under contract to USGS","active":true,"usgs":false}],"preferred":false,"id":955811,"contributorType":{"id":1,"text":"Authors"},"rank":6}]}}
,{"id":70276827,"text":"70276827 - 2025 - Dating a medieval tsunami with uranium-series techniques on Caribbean corals","interactions":[],"lastModifiedDate":"2026-06-24T15:41:29.960816","indexId":"70276827","displayToPublicDate":"2025-10-16T00:00:00","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1807,"text":"Geophysical Research Letters","active":true,"publicationSubtype":{"id":10}},"title":"Dating a medieval tsunami with uranium-series techniques on Caribbean corals","docAbstract":"<p><span id=\"_mce_caret\" data-mce-bogus=\"1\" data-mce-type=\"format-caret\"><span>Uranium-series dates from coral boulders constrain the timing of a medieval tsunami from the Puerto Rico Trench. Previously reported evidence for this tsunami includes hundreds of coral boulders that came to rest hundreds of meters inland on Anegada, British Virgin Islands. New U-series dates on these coral boulders provide limiting dates for the tsunami. The narrowest limits were by dating interior bands of a coral that retains the hemispherical form of a living coral colony, and which include adjustments for the number of annual density band couplets between the dated samples and the boulder exteriors. By those limits, the tsunami dates between 1381 and 1391 CE, and likely occurred during summer or fall. The tsunami is important as the only reported sign that the eastern Puerto Rico Trench has produced a great earthquake. The dating may aid in defining the earthquake source and in communicating tsunami hazards.</span></span></p>","language":"English","publisher":"American Geophysical Union","doi":"10.1029/2024GL114448","usgsCitation":"Kilbourne, K.H., Weil-Accardo, J., Feuillet, N., Deschamps, P., Xu, Y., Shen, C., Sun, H., Halley, R.B., and Atwater, B., 2025, Dating a medieval tsunami with uranium-series techniques on Caribbean corals: Geophysical Research Letters, v. 52, no. 19, e2024GL114448, 11 p., https://doi.org/10.1029/2024GL114448.","productDescription":"e2024GL114448, 11 p.","ipdsId":"IP-173918","costCenters":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"links":[{"id":506076,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1029/2024gl114448","text":"Publisher Index Page"},{"id":505827,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"England, United States","otherGeospatial":"British Virgin Islands, Puerto Rico","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -65.98358900161526,\n              18.84830301706755\n            ],\n            [\n              -63.81181587829218,\n              18.836509111733207\n            ],\n            [\n              -63.82220143231413,\n              17.66235235817058\n            ],\n            [\n              -65.9823133275604,\n              17.675344440764448\n            ],\n            [\n              -65.98358900161526,\n              18.84830301706755\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"52","issue":"19","noUsgsAuthors":false,"publicationDate":"2025-10-08","publicationStatus":"PW","contributors":{"authors":[{"text":"Kilbourne, K. Halimeda 0000-0001-7864-8438","orcid":"https://orcid.org/0000-0001-7864-8438","contributorId":372712,"corporation":false,"usgs":false,"family":"Kilbourne","given":"K.","middleInitial":"Halimeda","affiliations":[{"id":7083,"text":"University of Maryland","active":true,"usgs":false}],"preferred":false,"id":963465,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Weil-Accardo, Jennifer","contributorId":198919,"corporation":false,"usgs":false,"family":"Weil-Accardo","given":"Jennifer","email":"","affiliations":[],"preferred":false,"id":963466,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Feuillet, Nathalie","contributorId":198911,"corporation":false,"usgs":false,"family":"Feuillet","given":"Nathalie","email":"","affiliations":[],"preferred":false,"id":963467,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Deschamps, Pierre 0000-0003-1687-3765","orcid":"https://orcid.org/0000-0003-1687-3765","contributorId":291330,"corporation":false,"usgs":false,"family":"Deschamps","given":"Pierre","email":"","affiliations":[{"id":62694,"text":"CEREGE, Aix-Marseille University, Aix-en Provence, France","active":true,"usgs":false}],"preferred":false,"id":963468,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Xu, Yuan-Yuan 0000-0001-5103-468X","orcid":"https://orcid.org/0000-0001-5103-468X","contributorId":297895,"corporation":false,"usgs":false,"family":"Xu","given":"Yuan-Yuan","email":"","affiliations":[{"id":64440,"text":"Cooperative Institute for Marine and Atmospheric Studies, Rosenstiel School for Marine and Atmospheric Science, University of Miami, Miami, FL","active":true,"usgs":false}],"preferred":false,"id":963469,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Shen, Chuan-Chou","contributorId":305467,"corporation":false,"usgs":false,"family":"Shen","given":"Chuan-Chou","affiliations":[{"id":30216,"text":"National Taiwan University","active":true,"usgs":false}],"preferred":false,"id":963470,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Sun, Hailong 0000-0002-3370-5299","orcid":"https://orcid.org/0000-0002-3370-5299","contributorId":372716,"corporation":false,"usgs":false,"family":"Sun","given":"Hailong","affiliations":[{"id":32415,"text":"Chinese Academy of Sciences","active":true,"usgs":false}],"preferred":false,"id":963471,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Halley, Robert B.","contributorId":372717,"corporation":false,"usgs":false,"family":"Halley","given":"Robert","middleInitial":"B.","affiliations":[{"id":88413,"text":"Iguana Farm (USGS retired)","active":true,"usgs":false}],"preferred":false,"id":963472,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Atwater, Brian F. 0000-0003-1155-2815","orcid":"https://orcid.org/0000-0003-1155-2815","contributorId":204658,"corporation":false,"usgs":true,"family":"Atwater","given":"Brian F.","affiliations":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"preferred":true,"id":963473,"contributorType":{"id":1,"text":"Authors"},"rank":9}]}}
,{"id":70273077,"text":"70273077 - 2025 - Museum records provide unique information about the distribution of the Yellow Lampmussel <i>Lampsilis cariosa</i> (Unionidae)","interactions":[],"lastModifiedDate":"2025-12-12T19:14:40.520059","indexId":"70273077","displayToPublicDate":"2025-10-15T12:07:54","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1699,"text":"Freshwater Science","active":true,"publicationSubtype":{"id":10}},"title":"Museum records provide unique information about the distribution of the Yellow Lampmussel <i>Lampsilis cariosa</i> (Unionidae)","docAbstract":"<p><span id=\"_mce_caret\" data-mce-bogus=\"1\" data-mce-type=\"format-caret\"><span>Natural history museum records may provide unique information on the distribution of species that can supplement survey data collected by resource managers. However, there can be challenges to using museum data for analyses, such as spurious geographic information, misidentifications, and incorrect labeling. Museum records have been centralized by open-source repositories with flags for coordinate precision and out-of-range specimens, providing some information about record uncertainty in general. Verification of uncertain museum records could increase confidence in distribution data and improve understanding of biodiversity patterns and range dynamics through time. The goal of this study was to determine if museum records provide unique information about the distribution of the Yellow Lampmussel&nbsp;</span><i>Lampsilis cariosa</i><span>&nbsp;(Say, 1817), an at-risk freshwater mussel species. We created a dichotomous key based on a hierarchy of conchological characteristics to verify the taxonomic identity of flagged&nbsp;</span><i>L. cariosa</i><span>&nbsp;specimens and assessed records occurring outside of the species’ expected range as compiled from primary literature. Fifty percent of flagged specimens were confirmed as&nbsp;</span><i>L. cariosa</i><span>. Of the invalid records, 56% were misidentifications, mainly of other&nbsp;</span><i>Lampsilis</i><span>&nbsp;species. Overall, museum collections (1800s–present) contributed 32 unique watersheds not represented by modern survey records (1980s–present, comprising 92 watersheds) including 13 unexpected watersheds in regions of New York and Vermont (USA) and Québec and Ontario (Canada). Our study provides a reproducible method for the reverification of freshwater mussel museum records and highlights how these records can provide unique contributions to our understanding of the geographic range of a rare, at-risk mussel species.</span></span></p>","language":"English","publisher":"The University of Chicago Press","doi":"10.1086/738615","usgsCitation":"Fedarick, J., Murphy, C.A., Record, S., and Roy, A.H., 2025, Museum records provide unique information about the distribution of the Yellow Lampmussel <i>Lampsilis cariosa</i> (Unionidae): Freshwater Science, v. 44, no. 4, p. 434-442, https://doi.org/10.1086/738615.","productDescription":"9 p.","startPage":"434","endPage":"442","ipdsId":"IP-174004","costCenters":[{"id":199,"text":"Coop Res Unit Leetown","active":true,"usgs":true}],"links":[{"id":497501,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"Canada, United States","state":"New York, Vermont","otherGeospatial":"Ontario, Quebec","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -90.15950260000896,\n              56.462837792190584\n            ],\n            [\n              -95.77691469485542,\n              49.71284520828655\n            ],\n            [\n              -85.11013420152203,\n              46.85470065182994\n            ],\n            [\n              -81.95949958747218,\n              44.63027898467527\n            ],\n            [\n              -79.51850001152886,\n              42.05772807401594\n            ],\n            [\n              -73.39821683387511,\n              41.96978452451617\n            ],\n            [\n              -72.36699219294661,\n              42.840968406530905\n            ],\n            [\n              -71.94060238105281,\n              45.20492109068548\n            ],\n            [\n              -64.41091936819154,\n              50.95131087236287\n            ],\n            [\n              -72.30757566485309,\n              56.462837792190584\n            ],\n            [\n              -90.15950260000896,\n              56.462837792190584\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"44","issue":"4","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Fedarick, Jillian","contributorId":363950,"corporation":false,"usgs":false,"family":"Fedarick","given":"Jillian","affiliations":[],"preferred":false,"id":952246,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Murphy, Christina Amy 0000-0002-3467-6610","orcid":"https://orcid.org/0000-0002-3467-6610","contributorId":335232,"corporation":false,"usgs":true,"family":"Murphy","given":"Christina","email":"","middleInitial":"Amy","affiliations":[{"id":199,"text":"Coop Res Unit Leetown","active":true,"usgs":true}],"preferred":true,"id":952247,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Record, Sydne 0000-0001-7293-2155","orcid":"https://orcid.org/0000-0001-7293-2155","contributorId":353707,"corporation":false,"usgs":false,"family":"Record","given":"Sydne","affiliations":[{"id":7063,"text":"University of Maine","active":true,"usgs":false}],"preferred":false,"id":952248,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Roy, Allison H. 0000-0002-8080-2729 aroy@usgs.gov","orcid":"https://orcid.org/0000-0002-8080-2729","contributorId":4240,"corporation":false,"usgs":true,"family":"Roy","given":"Allison","email":"aroy@usgs.gov","middleInitial":"H.","affiliations":[{"id":199,"text":"Coop Res Unit Leetown","active":true,"usgs":true}],"preferred":true,"id":952249,"contributorType":{"id":1,"text":"Authors"},"rank":4}]}}
,{"id":70272210,"text":"70272210 - 2025 - Impact of warming and suspended terrigenous sediment on the Hawaiian reef coral Montipora capitata","interactions":[],"lastModifiedDate":"2025-11-19T16:30:18.383713","indexId":"70272210","displayToPublicDate":"2025-10-15T10:24:30","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1338,"text":"Coral Reefs","active":true,"publicationSubtype":{"id":10}},"displayTitle":"Impact of warming and suspended terrigenous sediment on the Hawaiian reef coral <i>Montipora capitata</i>","title":"Impact of warming and suspended terrigenous sediment on the Hawaiian reef coral Montipora capitata","docAbstract":"<p><span>Coral reefs near high human population areas suffer from sedimentation and increased turbidity due to coastal development. However, there is limited research on how key species respond to turbidity caused by terrigenous sediment and how this response may change with increased water temperatures. This study investigated the effects of ambient and elevated turbidity (+ 26 NTU) in combination with ambient (27.1&nbsp;°C) and elevated temperature (+ 4.1&nbsp;°C; 31.2&nbsp;°C) on the dominant Hawaiian reef coral&nbsp;</span><i>Montipora capitata</i><span>, collected from two Kāneʻohe Bay watersheds with distinct environmental histories. Using intermittent flow respirometry, we found that acute (12&nbsp;h) exposure to elevated turbidity and temperature impacted algal symbionts (</span><i>Symbiodinium spp.</i><span>) but not the coral host, suggesting a potential delayed host physiological response. Corals from south Kāneʻohe Bay, where restricted water circulation and urbanization have degraded water quality, were more sensitive to stressors than those from the less-impacted northern sites, indicating that physiological responses vary by location and may be influenced by watershed conditions. The findings suggest that while short-term turbidity and warming impact&nbsp;</span><i>Symbiodinium spp.</i><span>&nbsp;immediately, prolonged exposure may lead to cascading effects on the coral host. Understanding these species-specific and location-dependent responses enhances our ability to guide restoration and conservation efforts for coral ecosystems facing both local (turbidity) and global (warming) stressors.&nbsp;</span></p>","language":"English","publisher":"Springer","doi":"10.1007/s00338-025-02752-4","usgsCitation":"Good, A.M., Epps, A., Coberly, M., Rodgers, K.S., Prouty, N.G., Storlazzi, C.D., and Bahr, K.D., 2025, Impact of warming and suspended terrigenous sediment on the Hawaiian reef coral Montipora capitata: Coral Reefs, v. 44, p. 2065-2081, https://doi.org/10.1007/s00338-025-02752-4.","productDescription":"17 p.","startPage":"2065","endPage":"2081","ipdsId":"IP-172051","costCenters":[{"id":520,"text":"Pacific Coastal and Marine Science Center","active":true,"usgs":true}],"links":[{"id":496751,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1007/s00338-025-02752-4","text":"Publisher Index Page"},{"id":496646,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Hawaii","otherGeospatial":"Kāneʻohe Bay","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -157.8410504477374,\n              21.5215747015302\n            ],\n            [\n              -157.85940646338184,\n              21.495958106947427\n            ],\n            [\n              -157.84288604930185,\n              21.45453507217063\n            ],\n            [\n              -157.78873580315093,\n              21.403701043743894\n            ],\n            [\n              -157.75615387538204,\n              21.416945226485694\n            ],\n            [\n              -157.7497292699065,\n              21.451545325344867\n            ],\n            [\n              -157.8410504477374,\n              21.5215747015302\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"44","noUsgsAuthors":false,"publicationDate":"2025-10-15","publicationStatus":"PW","contributors":{"authors":[{"text":"Good, Alexandra M.","contributorId":362412,"corporation":false,"usgs":false,"family":"Good","given":"Alexandra","middleInitial":"M.","affiliations":[{"id":36313,"text":"Texas A&M","active":true,"usgs":false}],"preferred":false,"id":950449,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Epps, Ashleigh","contributorId":362413,"corporation":false,"usgs":false,"family":"Epps","given":"Ashleigh","affiliations":[{"id":36313,"text":"Texas A&M","active":true,"usgs":false}],"preferred":false,"id":950450,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Coberly, Maile","contributorId":362414,"corporation":false,"usgs":false,"family":"Coberly","given":"Maile","affiliations":[{"id":36402,"text":"University of Hawaii","active":true,"usgs":false}],"preferred":false,"id":950451,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Rodgers, Kuʻulei S","contributorId":362415,"corporation":false,"usgs":false,"family":"Rodgers","given":"Kuʻulei","middleInitial":"S","affiliations":[{"id":36402,"text":"University of Hawaii","active":true,"usgs":false}],"preferred":false,"id":950452,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Prouty, Nancy G. 0000-0002-8922-0688 nprouty@usgs.gov","orcid":"https://orcid.org/0000-0002-8922-0688","contributorId":3350,"corporation":false,"usgs":true,"family":"Prouty","given":"Nancy","email":"nprouty@usgs.gov","middleInitial":"G.","affiliations":[{"id":520,"text":"Pacific Coastal and Marine Science Center","active":true,"usgs":true}],"preferred":true,"id":950453,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Storlazzi, Curt D. 0000-0001-8057-4490","orcid":"https://orcid.org/0000-0001-8057-4490","contributorId":213610,"corporation":false,"usgs":true,"family":"Storlazzi","given":"Curt","middleInitial":"D.","affiliations":[{"id":520,"text":"Pacific Coastal and Marine Science Center","active":true,"usgs":true}],"preferred":true,"id":950454,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Bahr, Keisha D.","contributorId":362417,"corporation":false,"usgs":false,"family":"Bahr","given":"Keisha","middleInitial":"D.","affiliations":[{"id":36313,"text":"Texas A&M","active":true,"usgs":false}],"preferred":false,"id":950455,"contributorType":{"id":1,"text":"Authors"},"rank":7}]}}
,{"id":70273154,"text":"70273154 - 2025 - S/P amplitude ratios with Distributed Acoustic Sensing and application to earthquake focal mechanisms","interactions":[],"lastModifiedDate":"2025-12-17T15:34:53.813397","indexId":"70273154","displayToPublicDate":"2025-10-15T09:22:52","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1807,"text":"Geophysical Research Letters","active":true,"publicationSubtype":{"id":10}},"displayTitle":"<i>S/P</i> amplitude ratios with Distributed Acoustic Sensing and application to earthquake focal mechanisms","title":"S/P amplitude ratios with Distributed Acoustic Sensing and application to earthquake focal mechanisms","docAbstract":"<p><span>Distributed acoustic sensing (DAS), which transforms a fiber optic cable into an array of high frequency strainmeters, has the potential to help us characterize earthquakes with a dense sampling of measurements. While earthquake focal mechanisms are frequently determined using&nbsp;</span><i>P</i><span>-wave polarities and&nbsp;</span><i>S</i><span>/</span><i>P</i><span>&nbsp;amplitude ratios with inertial seismometers, the dense sampling of DAS over potentially large portions of the focal sphere can aid our solutions. Here, we consider ∼200 regional earthquakes and thousands of&nbsp;</span><i>S</i><span>/</span><i>P</i><span>&nbsp;measurements on a DAS cable colocated with a network of inertial seismometers near Arcata, California. We demonstrate the&nbsp;</span><i>S</i><span>/</span><i>P</i><span>&nbsp;ratio measurements made on DAS are similar to those made on the inertial seismometers and can be used to constrain focal mechanism solutions.</span></p>","language":"English","publisher":"American Geophysical Union","doi":"10.1029/2025GL116373","usgsCitation":"Skoumal, R.J., Atterholt, J.W., Barbour, A.J., and Hardebeck, J.L., 2025, S/P amplitude ratios with Distributed Acoustic Sensing and application to earthquake focal mechanisms: Geophysical Research Letters, v. 52, no. 20, e2025GL116373, 8 p., https://doi.org/10.1029/2025GL116373.","productDescription":"e2025GL116373, 8 p.","ipdsId":"IP-177935","costCenters":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true},{"id":78686,"text":"Geologic Hazards Science Center - Seismology / Geomagnetism","active":true,"usgs":true}],"links":[{"id":497737,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1029/2025gl116373","text":"Publisher Index Page"},{"id":497635,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"California","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -125,\n              42\n            ],\n            [\n              -125,\n              40\n            ],\n            [\n              -123,\n              40\n            ],\n            [\n              -123,\n              42\n            ],\n            [\n              -125,\n              42\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"52","issue":"20","noUsgsAuthors":false,"publicationDate":"2025-10-15","publicationStatus":"PW","contributors":{"authors":[{"text":"Skoumal, Robert J. 0000-0002-5627-6239 rskoumal@usgs.gov","orcid":"https://orcid.org/0000-0002-5627-6239","contributorId":191213,"corporation":false,"usgs":true,"family":"Skoumal","given":"Robert","email":"rskoumal@usgs.gov","middleInitial":"J.","affiliations":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"preferred":true,"id":952469,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Atterholt, James William 0000-0003-1603-5518","orcid":"https://orcid.org/0000-0003-1603-5518","contributorId":361969,"corporation":false,"usgs":true,"family":"Atterholt","given":"James","middleInitial":"William","affiliations":[{"id":78686,"text":"Geologic Hazards Science Center - Seismology / Geomagnetism","active":true,"usgs":true}],"preferred":true,"id":952470,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Barbour, Andrew J. 0000-0002-6890-2452","orcid":"https://orcid.org/0000-0002-6890-2452","contributorId":215339,"corporation":false,"usgs":true,"family":"Barbour","given":"Andrew","middleInitial":"J.","affiliations":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"preferred":true,"id":952471,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Hardebeck, Jeanne L. 0000-0002-6737-7780","orcid":"https://orcid.org/0000-0002-6737-7780","contributorId":254964,"corporation":false,"usgs":true,"family":"Hardebeck","given":"Jeanne","email":"","middleInitial":"L.","affiliations":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"preferred":true,"id":952472,"contributorType":{"id":1,"text":"Authors"},"rank":4}]}}
,{"id":70272172,"text":"70272172 - 2025 - Re-oligotrophy in the Upper Mississippi River, USA, occurred in just a few years","interactions":[],"lastModifiedDate":"2025-12-15T16:40:30.851106","indexId":"70272172","displayToPublicDate":"2025-10-15T09:08:07","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1699,"text":"Freshwater Science","active":true,"publicationSubtype":{"id":10}},"title":"Re-oligotrophy in the Upper Mississippi River, USA, occurred in just a few years","docAbstract":"<p><span>Ecological systems can undergo large changes and regime shifts that are either catastrophic, neutral, or desirable. Rivers worldwide have recently undergone desirable regime shifts related to re-oligotrophy, which is a notable and ongoing reduction in concentrations of total suspended solids (TSS), total N, total P, or phytoplankton. For example, the Upper Mississippi River, USA, has experienced major water-quality changes in multiple river reaches in recent decades. In this study, we sought to understand the timing and magnitude of re-oligotrophy in the Mississippi River over a 20-y period. We used 2 topological data analysis algorithms to address hypotheses related to the following questions: What were the order and timing of water-quality changes? What was the time period over which the major changes occurred? What was the magnitude of water-quality change before and after change points (i.e., specific years when water-quality conditions transitioned abruptly to new states)? We examined 6 water-quality state variables that defined the ecological regime for the Upper Mississippi River. In one river reach, we found that strong reductions in phytoplankton/chlorophyll&nbsp;</span><i>a</i><span>&nbsp;had occurred first (2008), followed by total P (2013), and last in TSS (2014). In a downriver reach, we found notable reductions for chlorophyll&nbsp;</span><i>a</i><span>&nbsp;(2007) but substantial increases in TSS (2013). In both reaches, the water-quality changes trended over ≥15 y, but the largest changes and a likely regime shift occurred in just 6 y. The timing (2007–2014) and range (~6 y) of water-quality changes were similar between the 2 river reaches, but the directionality of the regime shift indicated re-oligotrophy for the upstream reach and water-quality degradation for the downstream reach. Topological methods applied to long-term datasets can aid our understanding of re-oligotrophication and degradation processes and may help resource managers restore desirable regimes.</span></p>","language":"English","publisher":"University of Chicago Press","doi":"10.1086/738457","usgsCitation":"Davis, K., Bungula, W., and Larson, D.M., 2025, Re-oligotrophy in the Upper Mississippi River, USA, occurred in just a few years: Freshwater Science, v. 44, no. 4, p. 409-421, https://doi.org/10.1086/738457.","productDescription":"13 p.","startPage":"409","endPage":"421","ipdsId":"IP-158399","costCenters":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"links":[{"id":496580,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"44","issue":"4","noUsgsAuthors":false,"publicationDate":"2025-10-15","publicationStatus":"PW","contributors":{"authors":[{"text":"Davis, Killian","contributorId":315371,"corporation":false,"usgs":false,"family":"Davis","given":"Killian","email":"","affiliations":[{"id":68293,"text":"University of Wisconsin La Crosse","active":true,"usgs":false}],"preferred":false,"id":950301,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Bungula, Wako","contributorId":315367,"corporation":false,"usgs":false,"family":"Bungula","given":"Wako","email":"","affiliations":[{"id":68293,"text":"University of Wisconsin La Crosse","active":true,"usgs":false}],"preferred":false,"id":950302,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Larson, Danelle M. 0000-0001-6349-6267","orcid":"https://orcid.org/0000-0001-6349-6267","contributorId":228838,"corporation":false,"usgs":true,"family":"Larson","given":"Danelle","email":"","middleInitial":"M.","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":950303,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70272724,"text":"70272724 - 2025 - Variation in detection distance of Eastern Black Rail (Laterallus jamaicensis jamaicensis) vocalizations by autonomous recording units","interactions":[],"lastModifiedDate":"2025-12-05T14:54:18.218207","indexId":"70272724","displayToPublicDate":"2025-10-15T08:50:27","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3731,"text":"Waterbirds","onlineIssn":"19385390","printIssn":"15244695","active":true,"publicationSubtype":{"id":10}},"displayTitle":"Variation in detection distance of Eastern Black Rail (<i>Laterallus jamaicensis jamaicensis</i>) vocalizations by autonomous recording units","title":"Variation in detection distance of Eastern Black Rail (Laterallus jamaicensis jamaicensis) vocalizations by autonomous recording units","docAbstract":"<p><span>Autonomous recording units (ARUs) are an emerging technology that allows for passive monitoring of soniferous animals and soundscapes. Over the past decade, ARUs have become a popular tool for monitoring birds for their potential to reduce the labor and costs of traditional in-person sampling procedures. However, uncertainty surrounding factors affecting detection of avian taxa using ARUs can inhibit their monitoring efficacy. Eastern Black Rails (</span><i>Laterallus jamaicensis jamaicensis</i><span>) are a secretive marsh bird listed as a federally threatened species in the U.S.A. Eastern Black Rail vocalizations are difficult to detect by field personnel, and numerous in-person surveys can be required to confirm their presence at a site. While ARUs are an alternative for detecting Eastern Black Rails, it is unknown at what maximum distance an ARU can detect their vocalizations. We evaluated factors affecting the detection distance of simulated vocalizations for ARUs in four marsh vegetation types under a range of environmental conditions. Detection distances varied across models, vocalization and vegetation types, and call volume.&nbsp;</span><i>Kickeedo</i><span>&nbsp;vocalizations were detected at greater distances, and detection distances increased for all vocalization types in open vegetation. High relative humidity increased detection distances, while louder background noise decreased detection distances. High wind speeds in cordgrass (</span><i>Spartina spp</i><span>.) decreased detection probability disproportionately relative to other vegetation types. Based on these results, considerations of survey area, vegetation type, and site condition can allow land managers and researchers to optimize Eastern Black Rail monitoring using ARUs. Given the substantial staff time needed to monitor this species, ARUs may increase the likelihood of detection and provide an efficient alternative to in-person monitoring.</span></p>","language":"English","publisher":"The Waterbird Society","doi":"10.1675/063.048.0206","usgsCitation":"Lamb, B.D., Levy, H.E., Beilke, E.A., Kross, C.S., Kappes, P.J., Sukiennik, M.J., Cox, J.A., Wilson, J.K., Woodrow, J.O., Butler, M.J., Zenzal, T.J., Fournier, A.M., and Woodrey, M.S., 2025, Variation in detection distance of Eastern Black Rail (Laterallus jamaicensis jamaicensis) vocalizations by autonomous recording units: Waterbirds, v. 48, no. 2, p. 1-12, https://doi.org/10.1675/063.048.0206.","productDescription":"12 p.","startPage":"1","endPage":"12","ipdsId":"IP-178264","costCenters":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"links":[{"id":497136,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"48","issue":"2","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Lamb, Blake D.","contributorId":363290,"corporation":false,"usgs":false,"family":"Lamb","given":"Blake","middleInitial":"D.","affiliations":[{"id":17848,"text":"Mississippi State University","active":true,"usgs":false}],"preferred":false,"id":951441,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Levy, Heather E.","contributorId":363291,"corporation":false,"usgs":false,"family":"Levy","given":"Heather","middleInitial":"E.","affiliations":[{"id":33355,"text":"Tall Timbers Research Station and Land Conservancy","active":true,"usgs":false}],"preferred":false,"id":951442,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Beilke, Elizabeth A.","contributorId":363293,"corporation":false,"usgs":false,"family":"Beilke","given":"Elizabeth","middleInitial":"A.","affiliations":[{"id":16984,"text":"University of Illinois at Urbana-Champaign","active":true,"usgs":false}],"preferred":false,"id":951443,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Kross, Chelsea S.","contributorId":363295,"corporation":false,"usgs":false,"family":"Kross","given":"Chelsea","middleInitial":"S.","affiliations":[{"id":16984,"text":"University of Illinois at Urbana-Champaign","active":true,"usgs":false}],"preferred":false,"id":951444,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Kappes, Peter J.","contributorId":363297,"corporation":false,"usgs":false,"family":"Kappes","given":"Peter","middleInitial":"J.","affiliations":[{"id":17848,"text":"Mississippi State University","active":true,"usgs":false}],"preferred":false,"id":951445,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Sukiennik, Matt J.","contributorId":363299,"corporation":false,"usgs":false,"family":"Sukiennik","given":"Matt","middleInitial":"J.","affiliations":[{"id":17848,"text":"Mississippi State University","active":true,"usgs":false}],"preferred":false,"id":951446,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Cox, James A.","contributorId":363301,"corporation":false,"usgs":false,"family":"Cox","given":"James","middleInitial":"A.","affiliations":[{"id":33355,"text":"Tall Timbers Research Station and Land Conservancy","active":true,"usgs":false}],"preferred":false,"id":951447,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Wilson, Jennifer K.","contributorId":363303,"corporation":false,"usgs":false,"family":"Wilson","given":"Jennifer","middleInitial":"K.","affiliations":[{"id":36188,"text":"U.S. Fish and Wildlife Service","active":true,"usgs":false}],"preferred":false,"id":951448,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Woodrow, Jarrett O.","contributorId":363305,"corporation":false,"usgs":false,"family":"Woodrow","given":"Jarrett","middleInitial":"O.","affiliations":[{"id":36188,"text":"U.S. Fish and Wildlife Service","active":true,"usgs":false}],"preferred":false,"id":951449,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Butler, Matthew J.","contributorId":363307,"corporation":false,"usgs":false,"family":"Butler","given":"Matthew","middleInitial":"J.","affiliations":[{"id":36188,"text":"U.S. Fish and Wildlife Service","active":true,"usgs":false}],"preferred":false,"id":951450,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Zenzal, Theodore J. Jr. 0000-0001-7342-1373","orcid":"https://orcid.org/0000-0001-7342-1373","contributorId":224399,"corporation":false,"usgs":true,"family":"Zenzal","given":"Theodore","suffix":"Jr.","email":"","middleInitial":"J.","affiliations":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"preferred":true,"id":951451,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Fournier, Auriel M.V.","contributorId":363311,"corporation":false,"usgs":false,"family":"Fournier","given":"Auriel","middleInitial":"M.V.","affiliations":[{"id":16984,"text":"University of Illinois at Urbana-Champaign","active":true,"usgs":false}],"preferred":false,"id":951452,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Woodrey, Mark S.","contributorId":363313,"corporation":false,"usgs":false,"family":"Woodrey","given":"Mark","middleInitial":"S.","affiliations":[{"id":17848,"text":"Mississippi State University","active":true,"usgs":false}],"preferred":false,"id":951453,"contributorType":{"id":1,"text":"Authors"},"rank":13}]}}
,{"id":70272114,"text":"70272114 - 2025 - Lake depth and light conditions alter Mysis vertical distributions","interactions":[],"lastModifiedDate":"2025-12-16T14:29:20.471012","indexId":"70272114","displayToPublicDate":"2025-10-15T07:50:33","publicationYear":"2025","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2330,"text":"Journal of Great Lakes Research","active":true,"publicationSubtype":{"id":10}},"displayTitle":"Lake depth and light conditions alter <i>Mysis</i> vertical distributions","title":"Lake depth and light conditions alter Mysis vertical distributions","docAbstract":"<p><span>Light regulates the vertical migration of many aquatic organisms.&nbsp;</span><i>Mysis</i><span>&nbsp;species couple pelagic and benthic habitats in lakes by diel vertical migrations (DVM), transporting energy and nutrients through the water column and food web. Although&nbsp;</span><i>Mysis</i><span>&nbsp;are generally assumed to remain on the bottom during the day, some have been observed in the pelagic zone during the day, indicating incomplete benthic-pelagic coupling in some systems. The degree to which light attenuation and lake depth interact to affect occurrence of mysids within the water column during the day is understudied. We used standardized&nbsp;</span><i>Mysis</i><span>&nbsp;net sampling in summers 2020 and 2021 across nine north-temperate lakes to test the hypotheses that 1)&nbsp;</span><i>Mysis</i><span>&nbsp;remain pelagic during the day at depths with sufficiently low light levels, and 2) pelagic-caught individuals during the day are, on average, smaller than those caught at night. To test these hypotheses, we assessed light, dissolved oxygen (DO),&nbsp;</span><i>Mysis</i><span>&nbsp;densities, and size distribution between night and day across bathymetric depths. In deep lakes and darkly colored shallow lakes,&nbsp;</span><i>Mysis</i><span>&nbsp;suspended in the water column during the day where light levels decreased to their light avoidance threshold (∼10</span><sup>-5</sup><span>&nbsp;to 10</span><sup>-6&nbsp;lx</sup><span>).&nbsp;</span><i>Mysis</i><span>&nbsp;suspended in the water column during the day were smaller than those collected at night. Further,&nbsp;</span><i>Mysis</i><span>&nbsp;were not captured when DO reached levels&nbsp;&lt;&nbsp;3 mg/L, regardless of light conditions. Our results suggest that benthic-pelagic coupling by&nbsp;</span><i>Mysis</i><span>&nbsp;is mediated through light conditions, lake morphometry, and DO conditions, and may include some degree of size-dependent behavior.</span></p>","language":"English","publisher":"Elsevier","doi":"10.1016/j.jglr.2025.102684","usgsCitation":"Chapina, R.J., O’Malley, B., Bowen, K.L., Viljanen, M.L., Bess, Z.A., Yule, D.L., Nejstgaard, J.C., Berger, S.A., Rennie, M.D., Paterson, M.J., Pothoven, S.A., Watkins, J.M., Rudstam, L.G., Chandra, S., and Stockwell, J.D., 2025, Lake depth and light conditions alter Mysis vertical distributions: Journal of Great Lakes Research, v. 51, no. 6, 102684, 8 p., https://doi.org/10.1016/j.jglr.2025.102684.","productDescription":"102684, 8 p.","ipdsId":"IP-165511","costCenters":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"links":[{"id":496720,"rank":1,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1016/j.jglr.2025.102684","text":"Publisher Index Page"},{"id":496534,"rank":2,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"51","issue":"6","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Chapina, Rosaura J.","contributorId":362156,"corporation":false,"usgs":false,"family":"Chapina","given":"Rosaura","middleInitial":"J.","affiliations":[{"id":86482,"text":"Univ. of Vermont","active":true,"usgs":false}],"preferred":false,"id":950115,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"O’Malley, Brian 0000-0001-5035-3080 bomalley@usgs.gov","orcid":"https://orcid.org/0000-0001-5035-3080","contributorId":216560,"corporation":false,"usgs":true,"family":"O’Malley","given":"Brian","email":"bomalley@usgs.gov","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":950116,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Bowen, Kelly L.","contributorId":38382,"corporation":false,"usgs":false,"family":"Bowen","given":"Kelly","email":"","middleInitial":"L.","affiliations":[],"preferred":false,"id":950117,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Viljanen, Martta L.M.","contributorId":362157,"corporation":false,"usgs":false,"family":"Viljanen","given":"Martta","middleInitial":"L.M.","affiliations":[{"id":39348,"text":"Norwegian University of Science and Technology","active":true,"usgs":false}],"preferred":false,"id":950118,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Bess, Zachary A.","contributorId":362158,"corporation":false,"usgs":false,"family":"Bess","given":"Zachary","middleInitial":"A.","affiliations":[{"id":37455,"text":"University of Nevada","active":true,"usgs":false}],"preferred":false,"id":950119,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Yule, Daniel L. 0000-0002-0117-5115","orcid":"https://orcid.org/0000-0002-0117-5115","contributorId":248693,"corporation":false,"usgs":true,"family":"Yule","given":"Daniel","middleInitial":"L.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":950120,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Nejstgaard, Jens C. 0000-0003-1236-0647","orcid":"https://orcid.org/0000-0003-1236-0647","contributorId":261756,"corporation":false,"usgs":false,"family":"Nejstgaard","given":"Jens","email":"","middleInitial":"C.","affiliations":[{"id":52993,"text":"Leibniz-Institute of Freshwater Ecology and Inland Fisheries (IGB)","active":true,"usgs":false}],"preferred":false,"id":950121,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Berger, Stella A. 0000-0002-8835-545X","orcid":"https://orcid.org/0000-0002-8835-545X","contributorId":244069,"corporation":false,"usgs":false,"family":"Berger","given":"Stella","email":"","middleInitial":"A.","affiliations":[{"id":38332,"text":"Leibniz-Institute of Freshwater Ecology and Inland Fisheries","active":true,"usgs":false}],"preferred":false,"id":950122,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Rennie, Michael D.","contributorId":362159,"corporation":false,"usgs":false,"family":"Rennie","given":"Michael","middleInitial":"D.","affiliations":[{"id":35506,"text":"Lakehead University","active":true,"usgs":false}],"preferred":false,"id":950123,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Paterson, Michael J.","contributorId":362160,"corporation":false,"usgs":false,"family":"Paterson","given":"Michael","middleInitial":"J.","affiliations":[{"id":86485,"text":"IISD Experimental Lakes","active":true,"usgs":false}],"preferred":false,"id":950124,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Pothoven, Steven A.","contributorId":362161,"corporation":false,"usgs":false,"family":"Pothoven","given":"Steven","middleInitial":"A.","affiliations":[{"id":36803,"text":"NOAA","active":true,"usgs":false}],"preferred":false,"id":950125,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Watkins, James M.","contributorId":189286,"corporation":false,"usgs":false,"family":"Watkins","given":"James","email":"","middleInitial":"M.","affiliations":[],"preferred":false,"id":950126,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Rudstam, Lars G.","contributorId":362162,"corporation":false,"usgs":false,"family":"Rudstam","given":"Lars","middleInitial":"G.","affiliations":[{"id":86486,"text":"Cornell Univ","active":true,"usgs":false}],"preferred":false,"id":950127,"contributorType":{"id":1,"text":"Authors"},"rank":13},{"text":"Chandra, Sudeep","contributorId":33195,"corporation":false,"usgs":false,"family":"Chandra","given":"Sudeep","affiliations":[{"id":12742,"text":"University of Nevada Reno","active":true,"usgs":false}],"preferred":false,"id":950128,"contributorType":{"id":1,"text":"Authors"},"rank":14},{"text":"Stockwell, Jason D.","contributorId":362163,"corporation":false,"usgs":false,"family":"Stockwell","given":"Jason","middleInitial":"D.","affiliations":[{"id":13253,"text":"University of Vermont","active":true,"usgs":false}],"preferred":false,"id":950129,"contributorType":{"id":1,"text":"Authors"},"rank":15}]}}
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