{"pageNumber":"244","pageRowStart":"6075","pageSize":"25","recordCount":184733,"records":[{"id":70256523,"text":"70256523 - 2023 - An agent-based model to quantify energetics, movement and habitat selection of mid-continent mallards in the Mississippi Alluvial Valley","interactions":[],"lastModifiedDate":"2024-08-07T12:17:58.180684","indexId":"70256523","displayToPublicDate":"2023-09-06T07:15:27","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1458,"text":"Ecological Modelling","active":true,"publicationSubtype":{"id":10}},"title":"An agent-based model to quantify energetics, movement and habitat selection of mid-continent mallards in the Mississippi Alluvial Valley","docAbstract":"<div id=\"preview-section-abstract\"><div id=\"abstracts\" class=\"Abstracts u-font-serif\"><div id=\"abs0002\" class=\"abstract author\"><div id=\"abss0002\"><p id=\"spara010\"><span>The dynamics of wintering waterfowl populations at the landscape scale are the result of complex interactions of environmental, behavioral and energetic drivers. Agent-based models provide a method to directly link these factors in a spatially explicit framework and allow the emergence of patterns from the aggregation of individual agent actions. We adapted the Spatially-explicit Waterbird Agent-based Model Program (SWAMP), originally developed for waterfowl in central California, to simulate a basin-scale population of&nbsp;mallards&nbsp;(</span><i>A. platyrhynchos</i><span>) wintering in the Mississippi Alluvial Valley over a four-month period (November–February). Simulated agents move within the landscape, foraging on areas made available based on a probabilistic inundation status, and converting food resources to endogenous energy. The model uses a high-resolution map of eastern Arkansas waterfowl habitats and incorporates a hierarchical habitat selection system that enables mallards to relocate at increasing scales in response to changing food availability. We validated the performance of modeled mallard&nbsp;body condition&nbsp;and behavioral metrics under a range of environmental conditions against expected outcomes derived from empirical data and found that the simulation produced realistic representations of changes in flight distances, energy expenditure, lipid storage, and foraging habitat use in response to depleting food resources over time. We discuss the model's applicability as a tool to quantify waterfowl response to a range of environmental conditions and to evaluate scenarios of landscape composition and configuration in the context of waterfowl population management.</span></p></div></div></div></div><div id=\"preview-section-introduction\"><br></div>","language":"English","publisher":"Elsevier","doi":"10.1016/j.ecolmodel.2023.110488","usgsCitation":"Weller, F.G., Webb, E.B., Fogenburg, S., Beatty, W., Kesler, D., Blenk, R.H., Ringelman, K.M., Miller, M.L., and Eadie, J., 2023, An agent-based model to quantify energetics, movement and habitat selection of mid-continent mallards in the Mississippi Alluvial Valley: Ecological Modelling, v. 485, 110488, https://doi.org/10.1016/j.ecolmodel.2023.110488.","productDescription":"110488","ipdsId":"IP-151506","costCenters":[{"id":198,"text":"Coop Res Unit Atlanta","active":true,"usgs":true},{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"links":[{"id":442176,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://repository.lsu.edu/agrnr_pubs/679","text":"Publisher Index Page"},{"id":432333,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"485","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Weller, Florian G.","contributorId":341013,"corporation":false,"usgs":false,"family":"Weller","given":"Florian","email":"","middleInitial":"G.","affiliations":[{"id":6754,"text":"University of Missouri","active":true,"usgs":false}],"preferred":false,"id":907803,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Webb, Elisabeth B. 0000-0003-3851-6056 ewebb@usgs.gov","orcid":"https://orcid.org/0000-0003-3851-6056","contributorId":3981,"corporation":false,"usgs":true,"family":"Webb","given":"Elisabeth","email":"ewebb@usgs.gov","middleInitial":"B.","affiliations":[{"id":199,"text":"Coop Res Unit Leetown","active":true,"usgs":true}],"preferred":true,"id":907804,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Fogenburg, Sean","contributorId":341014,"corporation":false,"usgs":false,"family":"Fogenburg","given":"Sean","email":"","affiliations":[{"id":7214,"text":"University of California, Davis","active":true,"usgs":false}],"preferred":false,"id":907805,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Beatty, William S. 0000-0003-0013-3113","orcid":"https://orcid.org/0000-0003-0013-3113","contributorId":224795,"corporation":false,"usgs":true,"family":"Beatty","given":"William S.","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":907806,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Kesler, Dylan","contributorId":341015,"corporation":false,"usgs":false,"family":"Kesler","given":"Dylan","affiliations":[{"id":37290,"text":"The Institute for Bird Populations","active":true,"usgs":false}],"preferred":false,"id":907807,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Blenk, Robert H.","contributorId":341016,"corporation":false,"usgs":false,"family":"Blenk","given":"Robert","email":"","middleInitial":"H.","affiliations":[{"id":7214,"text":"University of California, Davis","active":true,"usgs":false}],"preferred":false,"id":907808,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Ringelman, Kevin M.","contributorId":341017,"corporation":false,"usgs":false,"family":"Ringelman","given":"Kevin","email":"","middleInitial":"M.","affiliations":[{"id":5115,"text":"Louisiana State University","active":true,"usgs":false}],"preferred":false,"id":907809,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Miller, Matt L.","contributorId":341018,"corporation":false,"usgs":false,"family":"Miller","given":"Matt","email":"","middleInitial":"L.","affiliations":[{"id":7214,"text":"University of California, Davis","active":true,"usgs":false}],"preferred":false,"id":907810,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Eadie, John M.","contributorId":341020,"corporation":false,"usgs":false,"family":"Eadie","given":"John M.","affiliations":[{"id":7214,"text":"University of California, Davis","active":true,"usgs":false}],"preferred":false,"id":907811,"contributorType":{"id":1,"text":"Authors"},"rank":9}]}}
,{"id":70260137,"text":"70260137 - 2023 - Memorial to Norman W. Ten Brink (1943–2023)","interactions":[],"lastModifiedDate":"2024-10-29T11:44:41.691242","indexId":"70260137","displayToPublicDate":"2023-09-06T06:43:26","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":899,"text":"Arctic, Antarctic, and Alpine Research","active":true,"publicationSubtype":{"id":10}},"title":"Memorial to Norman W. Ten Brink (1943–2023)","docAbstract":"<p>No abstract available.</p>","language":"English","publisher":"Taylor and Francis","doi":"10.1080/15230430.2023.2248844","usgsCitation":"Neal, W., Werner, A., and Waythomas, C.F., 2023, Memorial to Norman W. Ten Brink (1943–2023): Arctic, Antarctic, and Alpine Research, v. 55, no. 1, 2248844, 3 p., https://doi.org/10.1080/15230430.2023.2248844.","productDescription":"2248844, 3 p.","ipdsId":"IP-157269","costCenters":[{"id":617,"text":"Volcano Science Center","active":true,"usgs":true}],"links":[{"id":467094,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1080/15230430.2023.2248844","text":"Publisher Index Page"},{"id":463309,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"55","issue":"1","noUsgsAuthors":false,"publicationDate":"2023-09-06","publicationStatus":"PW","contributors":{"authors":[{"text":"Neal, William J.","contributorId":304957,"corporation":false,"usgs":false,"family":"Neal","given":"William J.","affiliations":[],"preferred":false,"id":917144,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Werner, Alan","contributorId":345633,"corporation":false,"usgs":false,"family":"Werner","given":"Alan","email":"","affiliations":[{"id":82665,"text":"Mt. Holyoke College","active":true,"usgs":false}],"preferred":false,"id":917145,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Waythomas, Christopher F. 0000-0002-3898-272X cwaythomas@usgs.gov","orcid":"https://orcid.org/0000-0002-3898-272X","contributorId":640,"corporation":false,"usgs":true,"family":"Waythomas","given":"Christopher","email":"cwaythomas@usgs.gov","middleInitial":"F.","affiliations":[{"id":617,"text":"Volcano Science Center","active":true,"usgs":true}],"preferred":true,"id":917146,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70250860,"text":"70250860 - 2023 - Seasonal differences and grazing pressure alter the fate of gold nanoparticles in a microcosm experiment","interactions":[],"lastModifiedDate":"2024-01-10T16:36:51.665148","indexId":"70250860","displayToPublicDate":"2023-09-05T10:31:56","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1565,"text":"Environmental Science & Technology","onlineIssn":"1520-5851","printIssn":"0013-936X","active":true,"publicationSubtype":{"id":10}},"title":"Seasonal differences and grazing pressure alter the fate of gold nanoparticles in a microcosm experiment","docAbstract":"<p><span>Gold nanoparticles (AuNPs) are used as models to track and predict NP fates and effects in ecosystems. Previous work found that aquatic macrophytes and their associated biofilm primarily drove the fate of AuNPs within aquatic ecosystems and that seasonality was an important abiotic factor in the fate of AuNPs. Therefore, the present work aims to study if grazers, by feeding on these interfaces, modify the AuNP fate and if this is altered by seasonal fluctuations. Microcosms were dosed with 44.8 μg/L of AuNP weekly for 4 weeks and maintained in environmental chambers simulating Spring and Fall light and temperature conditions. We discovered that seasonal changes and the presence of grazers significantly altered the fate of Au. Higher temperatures in the warmer season increased dissolved organic carbon (DOC) content in the water column, leading to stabilization of Au in the water column. Additionally, snail grazing on biofilm growing on the&nbsp;</span><i>Egeria densa</i><span>&nbsp;surface led to a transfer of Au from macrophytes to the organic matter above the sediments. These results demonstrate that climate and grazers significantly impacted the fate of Au from AuNPs, highlighting the role that grazers might have in a large and biologically more complex ecosystem.</span></p>","language":"English","publisher":"American Chemical Society","doi":"10.1021/acs.est.3c01839","usgsCitation":"Bergemann, C.M., Avellan, A., Perrotta, B.G., Bernhardt, E.S., and Simonin, M., 2023, Seasonal differences and grazing pressure alter the fate of gold nanoparticles in a microcosm experiment: Environmental Science & Technology, v. 57, no. 37, p. 13970-13979, https://doi.org/10.1021/acs.est.3c01839.","productDescription":"10 p.","startPage":"13970","endPage":"13979","ipdsId":"IP-155275","costCenters":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"links":[{"id":442179,"rank":0,"type":{"id":41,"text":"Open Access External Repository Page"},"url":"https://hal.science/hal-04208811","text":"External Repository"},{"id":424283,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"57","issue":"37","noUsgsAuthors":false,"publicationDate":"2023-09-05","publicationStatus":"PW","contributors":{"authors":[{"text":"Bergemann, Christina M.","contributorId":333057,"corporation":false,"usgs":false,"family":"Bergemann","given":"Christina","email":"","middleInitial":"M.","affiliations":[{"id":12643,"text":"Duke University","active":true,"usgs":false}],"preferred":false,"id":891815,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Avellan, Astrid","contributorId":333058,"corporation":false,"usgs":false,"family":"Avellan","given":"Astrid","email":"","affiliations":[{"id":12643,"text":"Duke University","active":true,"usgs":false}],"preferred":false,"id":891816,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Perrotta, Brittany G. 0000-0003-2669-3047","orcid":"https://orcid.org/0000-0003-2669-3047","contributorId":301929,"corporation":false,"usgs":true,"family":"Perrotta","given":"Brittany","middleInitial":"G.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":891817,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Bernhardt, Emily S.","contributorId":173736,"corporation":false,"usgs":false,"family":"Bernhardt","given":"Emily","email":"","middleInitial":"S.","affiliations":[{"id":27285,"text":"Duke Univerisity","active":true,"usgs":false}],"preferred":false,"id":891818,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Simonin, Marie 0000-0003-1493-881X","orcid":"https://orcid.org/0000-0003-1493-881X","contributorId":304843,"corporation":false,"usgs":false,"family":"Simonin","given":"Marie","email":"","affiliations":[{"id":66161,"text":"Université d’Angers","active":true,"usgs":false}],"preferred":false,"id":891819,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70248074,"text":"70248074 - 2023 - Contrasting mercury contamination scenarios and site susceptibilities confound fish mercury burdens in Suriname, South America","interactions":[],"lastModifiedDate":"2023-09-20T16:24:15.739703","indexId":"70248074","displayToPublicDate":"2023-09-05T10:19:25","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1555,"text":"Environmental Pollution","active":true,"publicationSubtype":{"id":10}},"title":"Contrasting mercury contamination scenarios and site susceptibilities confound fish mercury burdens in Suriname, South America","docAbstract":"<p><span>In Suriname, mercury (Hg) use has recently increased because of gold mining, which has put fish-reliant communities (e.g., Indigenous and Tribal) at risk of enhanced Hg exposure through the riverine fish these communities consume. To quantify how the magnitude of these risks change according to location and time, we measured total mercury (HgT) in fish at sites downstream and upstream of an artisanal and small-scale gold mining (ASGM) operation in 2004–2005 and in 2017–2018. We tested whether fish HgT burdens over dynamic ranges were increased. Surprisingly, our findings did not support broadly increased fish Hg burden over time or that proximity to ASGM was diagnostic to fish HgT-burden. Subsequently, we elected to test the HgT stable isotope ratios on a set of freshly collected 2020 fish to determine whether differences in Hg source and delivery pathways might cofound results. We found that remote unmined sites were more susceptible to gaseous elemental Hg deposition pathways, leading to enhanced risk of contamination, whereas ASGM proximate sites were not. These results highlight that elemental mercury releases from ASGM practices may have significant impact on fish-reliant communities that are far removed from ASGM point source contamination.</span></p>","language":"English","publisher":"Elsevier","doi":"10.1016/j.envpol.2023.122447","usgsCitation":"Vreedzaam, A., Ouboter, P., Hindori-Mohangoo, A.D., Lepak, R., Rumschlag, S.L., Janssen, S., Landburg, G., Shankar, A., Zijlmans, W., Lichtveld, M.Y., and Wickliffe, J.K., 2023, Contrasting mercury contamination scenarios and site susceptibilities confound fish mercury burdens in Suriname, South America: Environmental Pollution, v. 336, 122447, 8 p., https://doi.org/10.1016/j.envpol.2023.122447.","productDescription":"122447, 8 p.","ipdsId":"IP-155740","costCenters":[{"id":37947,"text":"Upper Midwest Water Science Center","active":true,"usgs":true}],"links":[{"id":442182,"rank":3,"type":{"id":40,"text":"Open Access Publisher Index 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Studies","active":true,"usgs":false}],"preferred":false,"id":881771,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Hindori-Mohangoo, Ashna D.","contributorId":328948,"corporation":false,"usgs":false,"family":"Hindori-Mohangoo","given":"Ashna","email":"","middleInitial":"D.","affiliations":[{"id":78536,"text":"Foundation for Perinatal Interventions and Research (Perisur)","active":true,"usgs":false}],"preferred":false,"id":881772,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Lepak, Ryan F. 0000-0003-2806-1895","orcid":"https://orcid.org/0000-0003-2806-1895","contributorId":210990,"corporation":false,"usgs":false,"family":"Lepak","given":"Ryan F.","affiliations":[{"id":16925,"text":"University of Wisconsin-Madison","active":true,"usgs":false}],"preferred":false,"id":881773,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Rumschlag, Samantha L. 0000-0003-3125-8402","orcid":"https://orcid.org/0000-0003-3125-8402","contributorId":304823,"corporation":false,"usgs":false,"family":"Rumschlag","given":"Samantha","email":"","middleInitial":"L.","affiliations":[{"id":12772,"text":"USEPA","active":true,"usgs":false}],"preferred":false,"id":881774,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Janssen, Sarah E. 0000-0003-4432-3154","orcid":"https://orcid.org/0000-0003-4432-3154","contributorId":210991,"corporation":false,"usgs":true,"family":"Janssen","given":"Sarah E.","affiliations":[{"id":37947,"text":"Upper Midwest Water Science Center","active":true,"usgs":true},{"id":677,"text":"Wisconsin Water Science Center","active":true,"usgs":true}],"preferred":true,"id":882069,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Landburg, Gwen","contributorId":328949,"corporation":false,"usgs":false,"family":"Landburg","given":"Gwen","email":"","affiliations":[{"id":78537,"text":"Anton de Kom University of Suriname","active":true,"usgs":false}],"preferred":false,"id":881776,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Shankar, Arti","contributorId":328950,"corporation":false,"usgs":false,"family":"Shankar","given":"Arti","email":"","affiliations":[{"id":13500,"text":"Tulane University","active":true,"usgs":false}],"preferred":false,"id":881777,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Zijlmans, Wilco","contributorId":328951,"corporation":false,"usgs":false,"family":"Zijlmans","given":"Wilco","email":"","affiliations":[{"id":78537,"text":"Anton de Kom University of Suriname","active":true,"usgs":false}],"preferred":false,"id":881778,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Lichtveld, Maureen Y.","contributorId":328952,"corporation":false,"usgs":false,"family":"Lichtveld","given":"Maureen","email":"","middleInitial":"Y.","affiliations":[{"id":12465,"text":"University of Pittsburgh","active":true,"usgs":false}],"preferred":false,"id":881779,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Wickliffe, Jeffrey K.","contributorId":328953,"corporation":false,"usgs":false,"family":"Wickliffe","given":"Jeffrey","email":"","middleInitial":"K.","affiliations":[{"id":40552,"text":"University of Alabama at Birmingham","active":true,"usgs":false}],"preferred":false,"id":881780,"contributorType":{"id":1,"text":"Authors"},"rank":11}]}}
,{"id":70248027,"text":"sir20235085 - 2023 - Updates to CE-QUAL-W2 models for select U.S. Army Corps of Engineers reservoirs in the Willamette Valley Project and an inter-reservoir reach of the Middle Fork Willamette River, northwestern Oregon","interactions":[],"lastModifiedDate":"2025-08-14T19:42:16.158318","indexId":"sir20235085","displayToPublicDate":"2023-09-05T09:38:18","publicationYear":"2023","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":5,"text":"USGS Numbered Series"},"seriesTitle":{"id":334,"text":"Scientific Investigations Report","code":"SIR","onlineIssn":"2328-0328","printIssn":"2328-031X","active":true,"publicationSubtype":{"id":5}},"seriesNumber":"2023-5085","displayTitle":"Updates to CE-QUAL-W2 Models for Select U.S. Army Corps of Engineers Reservoirs in the Willamette Valley Project and an Inter-Reservoir Reach of the Middle Fork Willamette River, Northwestern Oregon","title":"Updates to CE-QUAL-W2 models for select U.S. Army Corps of Engineers reservoirs in the Willamette Valley Project and an inter-reservoir reach of the Middle Fork Willamette River, northwestern Oregon","docAbstract":"<p>Mechanistic models capable of simulating hydrodynamics and water temperature in rivers and reservoirs are valuable tools for investigating thermal conditions and their relation to dam operations and streamflow in river basins where upstream water storage and management decisions have an important influence on river reaches with threatened fish populations. In particular, models allow managers to investigate how new, untried operations or hypothetical structures might influence streamflow and temperature conditions downstream. CE-QUAL-W2 is a two-dimensional (laterally averaged) hydrodynamic water-quality model that has previously been used to investigate the downstream effects of dam operations and other anthropogenic influences on stream temperature in the Willamette River Basin in northwestern Oregon, a region with two populations of fish species designated as threatened under the Endangered Species Act. By linking CE-QUAL-W2 river models to models of upstream, large Willamette Valley Project dams and reservoirs, these models can be used to investigate how dam operations at individual dams can influence streamflow and thermal conditions in downstream river reaches as an integrated system. Integrated model simulations that include the large dams and reservoirs linked to downstream river reaches can help managers develop a better understanding of tradeoffs associated with potential retrofits or operational changes across the multipurpose dams in the Willamette Valley Project, the effect of dam management on downstream tributaries and the Willamette River, and the resulting potential effect on threatened fish populations and habitat conditions.</p><p>River models capable of simulating river corridors downstream from U.S. Army Corps of Engineers dams were previously updated and integrated to simulate conditions that occurred from March through October of 2011 (a cool and wet year), 2015 (a hot and dry year), and 2016 (a moderately hot and dry year) using CE-QUAL-W2 version 4.2. These river models encompass the following:</p><ul><ul><li>Coast Fork Willamette and Middle Fork Willamette Rivers, the Row River, and Fall Creek downstream from Cottage Grove, Dexter, Dorena, and Fall Creek Dams, respectively;</li><li>South Fork McKenzie River downstream from Cougar Dam;</li><li>McKenzie River downstream from its confluence with the South Fork McKenzie River;</li><li>South Santiam River downstream from Foster Dam;</li><li>North Santiam River downstream from Big Cliff Dam; and</li><li>Willamette River from its start at the confluence of the Middle Fork Willamette and Coast Fork Willamette Rivers to Willamette Falls (river mile 26.0; near West Linn, Oregon).</li></ul></ul><p>This report documents model modifications, boundary condition data sources or estimation methods, and goodness-of-fit statistics for six CE-QUAL-W2 reservoir models and one river model upstream from the existing river models. These models simulate (1) Hills Creek Lake; (2) Lookout Point Lake and Dexter Reservoir on the Middle Fork Willamette River; (3) the Middle Fork Willamette River reach between Hills Creek Dam upstream and Lookout Point Lake downstream; (4) Cougar Reservoir on the South Fork McKenzie River; (5) Green Peter Lake on the Middle Santiam River and Foster Lake on the South Santiam River; and (6) Detroit Lake and (7) Big Cliff Reservoir on the North Santiam River. These CE-QUAL-W2 models were built by a variety of researchers to simulate a range of conditions in past years; this report documents their upgrade to U.S. Geological Survey (USGS) edition 7 of version 4.2 of CE-QUAL-W2 and updates each model to simulate conditions from January through December of 2011, 2015, and 2016. Also included in this report is an explanation of modifications to the CE-QUAL-W2 source code that constitute USGS edition 7 of CE-QUAL-W2 version 4.2. Each of the models described in this report can be run in isolation or linked to downstream models as a “system model” to simulate conditions in tributaries and (or) in the Willamette Valley Project as a whole.</p><p>As part of the model updates described in this report, some model parameters were adjusted to improve stability or decrease model error, and boundary conditions including meteorological, hydrologic, and temperature inputs were developed and updated for model years 2011, 2015, and 2016, as necessary. In some cases, the data sources used to drive previous model versions were no longer available, which required the development and checking of new data sources or estimation techniques. Goodness-of-fit statistics for outflow from the dams and in simulated river reaches generally show a good model fit, with the models simulating subdaily water temperatures at most comparable locations with a mean absolute error of generally less than 1 degree Celsius (°C) and a reasonably low bias. Model simulation of the thermal vertical profiles in each reservoir also produced an overall mean absolute error of generally less than 1 °C for all 3 years, with the exception of the Hills Creek Lake Model and the Cougar Reservoir Model in years when the reservoirs did not fill (2015 and 2016). Both of these models have known calibration issues and tend to be sensitive to the choice of certain structural parameters in the model. Overall, the calibration process was focused on obtaining model settings that led to realistic water temperature predictions in all 3 years (2011, 2015, and 2016) without over-calibrating specifically to any single year. A complete investigation of model error for these reservoir submodels was beyond the scope of this investigation but could be undertaken in the future if better model performance for these two reservoirs is desired.</p>","language":"English","publisher":"U.S. Geological Survey","publisherLocation":"Reston, VA","doi":"10.3133/sir20235085","collaboration":"Prepared in cooperation with the U.S. Army Corps of Engineers, Portland District","usgsCitation":"Stratton Garvin, L.E., Buccola, N.L., and Rounds, S.A., 2023, Updates to CE-QUAL-W2 models for select U.S. Army Corps of Engineers reservoirs in the Willamette Valley Project and an inter-reservoir reach of the Middle Fork Willamette River, northwestern Oregon (ver. 1.1, June 2025): U.S. Geological Survey Scientific Investigations Report 2023–5085, 89 p., https://doi.org/10.3133/sir20235085.","productDescription":"Report: xii, 89 p.; Data Release","onlineOnly":"Y","ipdsId":"IP-141377","costCenters":[{"id":518,"text":"Oregon Water Science Center","active":true,"usgs":true}],"links":[{"id":494149,"rank":7,"type":{"id":36,"text":"NGMDB Index Page"},"url":"https://ngmdb.usgs.gov/Prodesc/proddesc_115245.htm","linkFileType":{"id":5,"text":"html"}},{"id":420372,"rank":6,"type":{"id":31,"text":"Publication XML"},"url":"https://pubs.usgs.gov/sir/2023/5085/sir20235085.XML"},{"id":420371,"rank":5,"type":{"id":34,"text":"Image Folder"},"url":"https://pubs.usgs.gov/sir/2023/5085/images"},{"id":420373,"rank":4,"type":{"id":30,"text":"Data Release"},"url":"https://doi.org/10.5066/P9UJFXA5","text":"USGS data release","description":"USGS data release","linkHelpText":"CE-QUAL-W2 models for select U.S. Army Corps of Engineers reservoirs in the Willamette Valley Project and an inter-reservoir reach of the Middle Fork Willamette River, northwestern Oregon, 2011, 2015, and 2016 (ver. 1.1, May 2025)"},{"id":491287,"rank":3,"type":{"id":25,"text":"Version History"},"url":"https://pubs.usgs.gov/sir/2023/5085/versionHist.txt","size":"2 KB","linkFileType":{"id":2,"text":"txt"}},{"id":420368,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/sir/2023/5085/coverthb2.jpg"},{"id":420369,"rank":2,"type":{"id":11,"text":"Document"},"url":"https://pubs.usgs.gov/sir/2023/5085/sir20235085.pdf","text":"Report","size":"24 MB","linkFileType":{"id":1,"text":"pdf"},"description":"SIR 2023-5085"}],"country":"United States","state":"Oregon","otherGeospatial":"Willamette River Basin","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -122.45633507532085,\n              45.58946612874976\n            ],\n            [\n              -122.9361641346579,\n              46.04098363545978\n            ],\n            [\n              -123.5145410212395,\n              45.5627587310459\n            ],\n            [\n              -123.63148629596873,\n              44.60670825289975\n            ],\n            [\n              -123.5623951104441,\n              43.59496378124939\n            ],\n            [\n              -123.05635970383773,\n              43.13379451064938\n            ],\n            [\n              -121.74055049946932,\n              42.79157283626091\n            ],\n            [\n              -121.20756798908744,\n              43.3534143414802\n            ],\n            [\n              -121.15566880710551,\n              44.42799279254055\n            ],\n            [\n              -121.3336847614029,\n              45.19900479802473\n            ],\n            [\n              -121.88806972979938,\n              45.53916954884161\n            ],\n            [\n              -122.45633507532085,\n              45.58946612874976\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","edition":"Version 1.0: September 5, 2023; Version 1.1: June 27, 2025","contact":"<p><a href=\"mailto:dc_or@usgs.gov\" data-mce-href=\"mailto:dc_or@usgs.gov\">Director</a>, <a href=\"https://www.usgs.gov/centers/oregon-water-science-center\" target=\"_blank\" rel=\"noopener\" data-mce-href=\"https://www.usgs.gov/centers/oregon-water-science-center\">Oregon Water Science Center</a><br>U.S. Geological Survey<br>601 SW Second Avenue, Suite 1950<br>Portland, Oregon 97204</p>","tableOfContents":"<ul><li>Acknowledgments</li><li>Abstract</li><li>Introduction</li><li>Methods and Data</li><li>Model Updates</li><li>Summary and Possible Future Research</li><li>References Cited</li><li>Appendixes 1-2</li></ul>","publishedDate":"2023-09-05","revisedDate":"2025-06-27","noUsgsAuthors":false,"publicationDate":"2023-09-05","publicationStatus":"PW","contributors":{"authors":[{"text":"Stratton Garvin, Laurel E. 0000-0001-8567-8619 lstratton@usgs.gov","orcid":"https://orcid.org/0000-0001-8567-8619","contributorId":270182,"corporation":false,"usgs":true,"family":"Stratton Garvin","given":"Laurel","email":"lstratton@usgs.gov","middleInitial":"E.","affiliations":[{"id":518,"text":"Oregon Water Science Center","active":true,"usgs":true}],"preferred":true,"id":881555,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Buccola, Norman L. 0000-0002-9590-2458 nbuccola@usgs.gov","orcid":"https://orcid.org/0000-0002-9590-2458","contributorId":139096,"corporation":false,"usgs":true,"family":"Buccola","given":"Norman","email":"nbuccola@usgs.gov","middleInitial":"L.","affiliations":[{"id":518,"text":"Oregon Water Science Center","active":true,"usgs":true}],"preferred":true,"id":881556,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Rounds, Stewart A. 0000-0002-8540-2206 sarounds@usgs.gov","orcid":"https://orcid.org/0000-0002-8540-2206","contributorId":905,"corporation":false,"usgs":true,"family":"Rounds","given":"Stewart","email":"sarounds@usgs.gov","middleInitial":"A.","affiliations":[{"id":518,"text":"Oregon Water Science Center","active":true,"usgs":true}],"preferred":true,"id":881557,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70248078,"text":"70248078 - 2023 - A nitrifier-enriched microbial community contributes to the degradation of environmental DNA","interactions":[],"lastModifiedDate":"2024-02-07T16:40:24.558146","indexId":"70248078","displayToPublicDate":"2023-09-05T09:25:07","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":5840,"text":"Environmental DNA","active":true,"publicationSubtype":{"id":10}},"title":"A nitrifier-enriched microbial community contributes to the degradation of environmental DNA","docAbstract":"<p><span>Environmental DNA (eDNA) surveys are a promising alternative to traditional monitoring of invasive species, rare species, and biodiversity. Detecting organism-specific eDNA reduces the need to collect physical specimens for population estimates, and the high sensitivity of eDNA assays may improve detection of rare or cryptic species. However, correlating estimated concentrations of eDNA with species abundance can be difficult due to the many abiotic and biotic factors that influence eDNA persistence and degradation. Here, we assessed the impact of a nitrifier-enriched microbial (NEM) community on the persistence and degradation of&nbsp;</span><i>Hypophthalmichthys molitrix</i><span>&nbsp;(silver carp) milt eDNA using experimental aquatic mesocosms and a quantitative PCR approach. The NEM community was cultured from combined sediment and water samples collected from a golf course pond in Columbia, Missouri (USA), and experiments were conducted in the dark at 22°C. We found that the NEM community transformed organic nitrogen from silver carp milt to measurable amounts of nitrate, both in the presence and absence of ammonia nitrogen. Additionally, regardless of ammonia availability, milt eDNA followed a one-phase exponential decay pattern after an initial 24-h plateau in the presence of the NEM community. However, milt eDNA had a shorter half-life (12.5 h) in the absence of exogenous ammonia compared to when ammonia was present (15 h). In sterile mesocosms, eDNA was stable during the 72-h experiment. Together, these results suggest that the presence of microorganisms is necessary for short-term degradation of eDNA. Furthermore, nitrifying microbial communities, which are ubiquitous in most soil and water environments, could limit eDNA persistence in the environment. Understanding the contributions of environmental microbial communities will allow more confidence in sampling design and eDNA result interpretations for biodiversity management applications.</span></p>","language":"English","publisher":"Wiley","doi":"10.1002/edn3.469","usgsCitation":"Beattie, R.E., Helbing, C., Imbery, J.J., Klymus, K.E., Lopez Duran, J., Richter, C.A., Thambirajah, A.A., Thompson, N., and Edwards, T.M., 2023, A nitrifier-enriched microbial community contributes to the degradation of environmental DNA: Environmental DNA, v. 5, no. 6, p. 1473-1483, https://doi.org/10.1002/edn3.469.","productDescription":"11 p.","startPage":"1473","endPage":"1483","ipdsId":"IP-150919","costCenters":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"links":[{"id":442184,"rank":3,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1002/edn3.469","text":"Publisher Index Page"},{"id":435189,"rank":2,"type":{"id":30,"text":"Data Release"},"url":"https://doi.org/10.5066/P9UTO4MC","text":"USGS data release","linkHelpText":"Water chemistry and molecular eDNA data observed in experimental laboratory mesocosms exposed to different nitrogen amendments in the presence or absence of a nitrifier enriched microbial community"},{"id":420476,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"5","issue":"6","noUsgsAuthors":false,"publicationDate":"2023-08-28","publicationStatus":"PW","contributors":{"authors":[{"text":"Beattie, Rachelle Elaine 0000-0002-9648-4948","orcid":"https://orcid.org/0000-0002-9648-4948","contributorId":298312,"corporation":false,"usgs":true,"family":"Beattie","given":"Rachelle","email":"","middleInitial":"Elaine","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":881806,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Helbing, Caren C.","contributorId":264551,"corporation":false,"usgs":false,"family":"Helbing","given":"Caren C.","affiliations":[{"id":16829,"text":"University of Victoria","active":true,"usgs":false}],"preferred":false,"id":881807,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Imbery, Jacob J.","contributorId":328954,"corporation":false,"usgs":false,"family":"Imbery","given":"Jacob","email":"","middleInitial":"J.","affiliations":[{"id":34471,"text":"University of Victoria, Canada","active":true,"usgs":false}],"preferred":false,"id":881808,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Klymus, Katy E. 0000-0002-8843-6241 kklymus@usgs.gov","orcid":"https://orcid.org/0000-0002-8843-6241","contributorId":5043,"corporation":false,"usgs":true,"family":"Klymus","given":"Katy","email":"kklymus@usgs.gov","middleInitial":"E.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":881809,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Lopez Duran, Jonathan 0000-0001-5927-280X","orcid":"https://orcid.org/0000-0001-5927-280X","contributorId":328955,"corporation":false,"usgs":true,"family":"Lopez Duran","given":"Jonathan","email":"","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":881810,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Richter, Cathy A. 0000-0001-7322-4206 crichter@usgs.gov","orcid":"https://orcid.org/0000-0001-7322-4206","contributorId":1878,"corporation":false,"usgs":true,"family":"Richter","given":"Cathy","email":"crichter@usgs.gov","middleInitial":"A.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":881811,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Thambirajah, Anita A.","contributorId":328956,"corporation":false,"usgs":false,"family":"Thambirajah","given":"Anita","email":"","middleInitial":"A.","affiliations":[{"id":34471,"text":"University of Victoria, Canada","active":true,"usgs":false}],"preferred":false,"id":881812,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Thompson, Nathan 0000-0002-1372-6340 nthompson@usgs.gov","orcid":"https://orcid.org/0000-0002-1372-6340","contributorId":196133,"corporation":false,"usgs":true,"family":"Thompson","given":"Nathan","email":"nthompson@usgs.gov","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":881813,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Edwards, Thea M. 0000-0002-6176-2872","orcid":"https://orcid.org/0000-0002-6176-2872","contributorId":241635,"corporation":false,"usgs":true,"family":"Edwards","given":"Thea","email":"","middleInitial":"M.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":881814,"contributorType":{"id":1,"text":"Authors"},"rank":9}]}}
,{"id":70248067,"text":"70248067 - 2023 - Proximate factors affecting mortality and maternal abandonment of young free-roaming feral horse foals","interactions":[],"lastModifiedDate":"2023-09-05T13:44:07.221981","indexId":"70248067","displayToPublicDate":"2023-09-05T08:31:33","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":16693,"text":"Journal of Veterinary Behavior","active":true,"publicationSubtype":{"id":10}},"title":"Proximate factors affecting mortality and maternal abandonment of young free-roaming feral horse foals","docAbstract":"<p><span>The burgeoning population of feral horses in the American west is due to high population growth, resulting from low adult mortality and high foal survival. In two populations of feral horses in western Utah, USA only 15 foals died (5%; mean age &lt;1 month) over a 4-year period. Seven additional foals (age &lt;70&nbsp;days) were observed separated from their dam, with no return to suckling or associating with the dam (i.e., abandoned). Factors affecting fate of foals were examined by comparing dead and separated foals with siblings (n = 19 dams, n = 32 siblings). Foals becoming separated or dying were observed in all years of the study, were unrelated to horse density, environmental effects, or gather events. There was no effect of dam body condition, parity, or age on foal survival or separation, and no effect of length of time the dam was in a group, whether the foal was born into the same group as conceived, and number of group changes made by the dam while pregnant. Dams of foals that died or were separated were more likely to change groups within 2 months after the foal was first seen, mostly after foal death or separation. Separated foals were near their dam less often, but there was no difference in frequency of social interactions. Separation of foals and dams is a natural occurrence in feral horses and survival likelihood for these foals is high – all separated foals that remained on the range in this study survived.</span></p>","language":"English","publisher":"Elsevier","doi":"10.1016/j.jveb.2023.06.006","usgsCitation":"King, S.R., Cole, M.J., Barton, C., and Schoenecker, K., 2023, Proximate factors affecting mortality and maternal abandonment of young free-roaming feral horse foals: Journal of Veterinary Behavior, v. 66, 10 p., https://doi.org/10.1016/j.jveb.2023.06.006.","productDescription":"10 p.","ipdsId":"IP-143611","costCenters":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"links":[{"id":435190,"rank":0,"type":{"id":30,"text":"Data Release"},"url":"https://doi.org/10.5066/P94G4W8U","text":"USGS data release","linkHelpText":"Data on separated and dead foals from Conger and Frisco Herd Management Areas, Utah, USA, between 2017 and 2020"},{"id":420473,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Utah","otherGeospatial":"Conger Herd Management Area, Frisco Herd Management Area","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -114.04663616849439,\n              38.90109959179986\n            ],\n            [\n              -112.96493822411813,\n              38.90109959179986\n            ],\n            [\n              -112.96493822411813,\n              39.926696460333545\n            ],\n            [\n              -114.04663616849439,\n              39.926696460333545\n            ],\n            [\n              -114.04663616849439,\n              38.90109959179986\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    },\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -114.0450241140984,\n              38.885159500721784\n            ],\n            [\n              -114.0450241140984,\n              38.33303112003492\n            ],\n            [\n              -113.05906288117404,\n              38.33303112003492\n            ],\n            [\n              -113.05906288117404,\n              38.885159500721784\n            ],\n            [\n              -114.0450241140984,\n              38.885159500721784\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"66","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"King, Sarah R. B. 0000-0002-9316-7488","orcid":"https://orcid.org/0000-0002-9316-7488","contributorId":280063,"corporation":false,"usgs":false,"family":"King","given":"Sarah","email":"","middleInitial":"R. B.","affiliations":[{"id":6621,"text":"Colorado State University","active":true,"usgs":false}],"preferred":false,"id":881737,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Cole, Mary J.","contributorId":328935,"corporation":false,"usgs":false,"family":"Cole","given":"Mary","email":"","middleInitial":"J.","affiliations":[{"id":6621,"text":"Colorado State University","active":true,"usgs":false}],"preferred":false,"id":881738,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Barton, Christine","contributorId":328936,"corporation":false,"usgs":false,"family":"Barton","given":"Christine","email":"","affiliations":[{"id":6621,"text":"Colorado State University","active":true,"usgs":false}],"preferred":false,"id":881739,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Schoenecker, Kathryn A. 0000-0001-9906-911X","orcid":"https://orcid.org/0000-0001-9906-911X","contributorId":202531,"corporation":false,"usgs":true,"family":"Schoenecker","given":"Kathryn A.","affiliations":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"preferred":true,"id":881740,"contributorType":{"id":1,"text":"Authors"},"rank":4}]}}
,{"id":70248306,"text":"70248306 - 2023 - Informing management of recovering predators and their prey with ecological diffusion models","interactions":[],"lastModifiedDate":"2023-12-04T17:13:19.395597","indexId":"70248306","displayToPublicDate":"2023-09-05T08:25:25","publicationYear":"2023","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":"Informing management of recovering predators and their prey with ecological diffusion models","docAbstract":"<p><span>The reintroduction and recovery of predators can be ecologically beneficial as well as socially and economically controversial. However, the growth and expansion of predator populations, and thus their ecological, social, and economic impacts, are not static but rather they vary in space and time. We propose a spatiotemporal statistical modeling framework based on ecological diffusion to better inform the ecology and management of recovering predators and their prey. We demonstrate its utility by applying it to a recovering sea otter (</span><i>Enhydra lutris</i><span>) population in Southeast Alaska, where sea otters were reintroduced in the late 1960s and have exhibited unprecedented population growth. Estimated parameters yield inferences about movement and population ecology, and our approach provides useful derived quantities, such as local abundance and carrying capacity as well as a quantity we term the equilibrium differential. We used our model to examine how density dependence and carrying capacity of sea otters vary spatially across a region. The diffusion modeling approach we present can be generalized for use in other instances of (re)colonization across taxa to inform management and conservation efforts.</span></p>","language":"English","publisher":"Ecological Society of America","doi":"10.1002/fee.2673","usgsCitation":"Eisaguirre, J.M., Williams, P.J., Lu, X., Kissling, M.L., Schutte, P.A., Weitzman, B.P., Beatty, W., Esslinger, G.G., Womble, J., and Hooten, M.B., 2023, Informing management of recovering predators and their prey with ecological diffusion models: Frontiers in Ecology and the Environment, v. 21, no. 10, p. 479-488, https://doi.org/10.1002/fee.2673.","productDescription":"10 p.","startPage":"479","endPage":"488","ipdsId":"IP-139715","costCenters":[{"id":65299,"text":"Alaska Science Center Ecosystems","active":true,"usgs":true}],"links":[{"id":420618,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"http://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Alaska","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -132.6558228433791,\n              54.44793968932811\n            ],\n            [\n              -130.55190367176715,\n              54.59274040700032\n            ],\n            [\n              -129.96174061307605,\n              55.43418169521104\n            ],\n            [\n              -129.9526209789433,\n              56.12093179822884\n            ],\n            [\n              -131.83252185602,\n              56.73963410260379\n            ],\n            [\n              -132.24813914520402,\n              57.29845828709895\n            ],\n            [\n              -135.39049766939493,\n              59.80731356406278\n            ],\n            [\n              -136.55572478868507,\n              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]\n}","volume":"21","issue":"10","noUsgsAuthors":false,"publicationDate":"2023-09-05","publicationStatus":"PW","contributors":{"authors":[{"text":"Eisaguirre, Joseph Michael 0000-0002-0450-8472","orcid":"https://orcid.org/0000-0002-0450-8472","contributorId":301980,"corporation":false,"usgs":true,"family":"Eisaguirre","given":"Joseph","email":"","middleInitial":"Michael","affiliations":[{"id":65299,"text":"Alaska Science Center Ecosystems","active":true,"usgs":true}],"preferred":true,"id":882378,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Williams, Perry J.","contributorId":169058,"corporation":false,"usgs":false,"family":"Williams","given":"Perry","email":"","middleInitial":"J.","affiliations":[{"id":25400,"text":"U.S. Fish and Wildlife Service, Big Oaks National Wildlife Refuge","active":true,"usgs":false}],"preferred":false,"id":882379,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Lu, Xinyi","contributorId":279368,"corporation":false,"usgs":false,"family":"Lu","given":"Xinyi","affiliations":[{"id":13606,"text":"CSU","active":true,"usgs":false}],"preferred":false,"id":882380,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Kissling, Michelle L.","contributorId":172675,"corporation":false,"usgs":false,"family":"Kissling","given":"Michelle","email":"","middleInitial":"L.","affiliations":[{"id":6654,"text":"USFWS","active":true,"usgs":false}],"preferred":false,"id":882381,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Schutte, Paul A","contributorId":329478,"corporation":false,"usgs":false,"family":"Schutte","given":"Paul","email":"","middleInitial":"A","affiliations":[{"id":6654,"text":"USFWS","active":true,"usgs":false}],"preferred":false,"id":882382,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Weitzman, Benjamin P 0000-0001-7559-3654","orcid":"https://orcid.org/0000-0001-7559-3654","contributorId":291739,"corporation":false,"usgs":false,"family":"Weitzman","given":"Benjamin","email":"","middleInitial":"P","affiliations":[{"id":36188,"text":"U.S. Fish and Wildlife Service","active":true,"usgs":false}],"preferred":false,"id":882383,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Beatty, William S. 0000-0003-0013-3113","orcid":"https://orcid.org/0000-0003-0013-3113","contributorId":224795,"corporation":false,"usgs":true,"family":"Beatty","given":"William S.","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":882384,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Esslinger, George G. 0000-0002-3459-0083 gesslinger@usgs.gov","orcid":"https://orcid.org/0000-0002-3459-0083","contributorId":131009,"corporation":false,"usgs":true,"family":"Esslinger","given":"George","email":"gesslinger@usgs.gov","middleInitial":"G.","affiliations":[{"id":116,"text":"Alaska Science Center Biology MFEB","active":true,"usgs":true}],"preferred":true,"id":882385,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Womble, Jamie N.","contributorId":267709,"corporation":false,"usgs":false,"family":"Womble","given":"Jamie N.","affiliations":[{"id":36245,"text":"NPS","active":true,"usgs":false}],"preferred":false,"id":882386,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Hooten, Mevin B. 0000-0002-1614-723X","orcid":"https://orcid.org/0000-0002-1614-723X","contributorId":292295,"corporation":false,"usgs":false,"family":"Hooten","given":"Mevin","email":"","middleInitial":"B.","affiliations":[{"id":12430,"text":"University of Texas at Austin","active":true,"usgs":false}],"preferred":false,"id":882387,"contributorType":{"id":1,"text":"Authors"},"rank":10}]}}
,{"id":70248263,"text":"70248263 - 2023 - Prioritizing science efforts to inform decision making on public lands","interactions":[],"lastModifiedDate":"2023-12-04T17:05:49.12494","indexId":"70248263","displayToPublicDate":"2023-09-05T08:24:53","publicationYear":"2023","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":"Prioritizing science efforts to inform decision making on public lands","docAbstract":"<p><span>Public land management agencies in the US are committed to using science-informed decision making, but there has been little research on the types and topics of science that managers need most to inform their decisions. We used the National Environmental Policy Act to identify four types of science information needed for making decisions relevant to public lands: (1) data on resources of concern, (2) scientific studies relevant to potential effects of proposed actions, (3) methods for quantifying potential effects of proposed actions, and (4) effective mitigation measures. We then used this framework to analyze 70 Environmental Assessments completed by the Bureau of Land Management in Colorado. Commonly proposed actions were oil and gas development, livestock grazing, land transactions, and recreation. Commonly analyzed resources included terrestrial wildlife, protected birds, vegetation, and soils. Focusing research efforts on the intersection of these resources and actions, and on developing and evaluating the effectiveness of mitigation measures to protect these resources, could strengthen the science foundation for public lands decision making.</span></p>","language":"English","publisher":"Wiley","doi":"10.1002/fee.2672","usgsCitation":"Carter, S.K., Haby, T., Meineke, J.K., Foster, A.C., McCall, L.E., Espy, L., Gilbert, M., Herrick, J.E., and Prentice, K., 2023, Prioritizing science efforts to inform decision making on public lands: Frontiers in Ecology and the Environment, v. 21, no. 10, p. 453-460, https://doi.org/10.1002/fee.2672.","productDescription":"8 p.","startPage":"453","endPage":"460","ipdsId":"IP-134196","costCenters":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"links":[{"id":442187,"rank":2,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1002/fee.2672","text":"Publisher Index Page"},{"id":420558,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"21","issue":"10","noUsgsAuthors":false,"publicationDate":"2023-09-05","publicationStatus":"PW","contributors":{"authors":[{"text":"Carter, Sarah K. 0000-0003-3778-8615","orcid":"https://orcid.org/0000-0003-3778-8615","contributorId":192418,"corporation":false,"usgs":true,"family":"Carter","given":"Sarah","email":"","middleInitial":"K.","affiliations":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"preferred":true,"id":882143,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Haby, Travis","contributorId":202409,"corporation":false,"usgs":false,"family":"Haby","given":"Travis","affiliations":[{"id":36421,"text":"Bureau of Land Management National Operations Center","active":true,"usgs":false}],"preferred":false,"id":882144,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Meineke, Jennifer K. 0000-0002-7136-5854","orcid":"https://orcid.org/0000-0002-7136-5854","contributorId":275418,"corporation":false,"usgs":true,"family":"Meineke","given":"Jennifer","email":"","middleInitial":"K.","affiliations":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"preferred":true,"id":882145,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Foster, Alison C. 0000-0002-6659-2120","orcid":"https://orcid.org/0000-0002-6659-2120","contributorId":260599,"corporation":false,"usgs":true,"family":"Foster","given":"Alison","email":"","middleInitial":"C.","affiliations":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"preferred":true,"id":882146,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"McCall, Laine E. 0000-0003-2624-8453","orcid":"https://orcid.org/0000-0003-2624-8453","contributorId":275417,"corporation":false,"usgs":true,"family":"McCall","given":"Laine","email":"","middleInitial":"E.","affiliations":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true}],"preferred":true,"id":882228,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Espy, Leigh","contributorId":329383,"corporation":false,"usgs":false,"family":"Espy","given":"Leigh","email":"","affiliations":[{"id":7217,"text":"Bureau of Land Management","active":true,"usgs":false}],"preferred":false,"id":882147,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Gilbert, Megan A.","contributorId":329384,"corporation":false,"usgs":false,"family":"Gilbert","given":"Megan A.","affiliations":[{"id":7217,"text":"Bureau of Land Management","active":true,"usgs":false}],"preferred":false,"id":882148,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Herrick, Jeffrey E.","contributorId":26054,"corporation":false,"usgs":false,"family":"Herrick","given":"Jeffrey","email":"","middleInitial":"E.","affiliations":[{"id":12627,"text":"USDA-ARS Jornada Experimental Range, New Mexico State University, Las Cruces, NM 88003-8003, USA","active":true,"usgs":false}],"preferred":false,"id":882149,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Prentice, Karen","contributorId":177304,"corporation":false,"usgs":false,"family":"Prentice","given":"Karen","affiliations":[],"preferred":false,"id":882150,"contributorType":{"id":1,"text":"Authors"},"rank":9}]}}
,{"id":70248127,"text":"70248127 - 2023 - Baiting and banding: Expert opinion on how bait trapping may influence the occurrence of highly pathogenic avian influenza (HPAI) among dabbling ducks","interactions":[],"lastModifiedDate":"2023-11-07T15:47:33.270361","indexId":"70248127","displayToPublicDate":"2023-09-05T08:18:36","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2507,"text":"Journal of Wildlife Diseases","active":true,"publicationSubtype":{"id":10}},"title":"Baiting and banding: Expert opinion on how bait trapping may influence the occurrence of highly pathogenic avian influenza (HPAI) among dabbling ducks","docAbstract":"<p><span>A Eurasian lineage highly pathogenic avian influenza virus (HPAIV) of the clade 2.3.4.4b (Goose/Guangdong lineage) was detected in migratory bird populations in North America in December 2021, and it, along with its reassortants, have since caused wild and domestic bird outbreaks across the continent. Relative to previous outbreaks, HPAIV cases among wild birds in 2022 exhibited wider geographic extent within North America and higher levels of mortality, suggesting the potential for population-level impacts. Given the possible conservation implications of HPAIV in wild birds, natural resource managers have sought guidance on actions that may mitigate negative effects of disease among North American bird populations, including modification of existing management practices. Banding of waterfowl is a critical tool for population management for several harvested species in North America, but some banding techniques, such as bait trapping, can lead to increased congregation of waterfowl, potentially altering HPAIV transmission. We used an expert opinion exercise to assess how bait trapping of dabbling ducks in Canada may influence HPAIV transmission and wild bird health. The expert group found that it is moderately likely that bait trapping of dabbling ducks in wetlands will significantly increase the transmission of HPAIV among individual ducks, but there is a low probability that this will result in significant population-level effects on North American dabbling ducks. Considering the lack of empirical work studying how capture and handling methods may change transmission of HPAIV among waterfowl, as well as the importance of bait trapping for waterfowl management in North America, future work should focus on filling knowledge gaps pertaining to the influence of baiting on HPAIV occurrence to better inform banding procedures and management decision making.</span></p>","language":"English","publisher":"Allen Press","doi":"10.7589/JWD-D-22-00163","usgsCitation":"Provencher, J.F., Wilcox, A.A., Gibbs, S.E., Howes, L., Mallory, M.L., Pybus, M.J., Ramey, A.M., Reed, E.T., Sharp, C., Soos, C., Stasiak, I., and Leafloor, J.O., 2023, Baiting and banding: Expert opinion on how bait trapping may influence the occurrence of highly pathogenic avian influenza (HPAI) among dabbling ducks: Journal of Wildlife Diseases, v. 59, no. 4, p. 590-600, https://doi.org/10.7589/JWD-D-22-00163.","productDescription":"11 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,{"id":70248874,"text":"70248874 - 2023 - Importance of dense aquatic vegetation in seasonal phosphate and particle transport in an agricultural headwater stream","interactions":[],"lastModifiedDate":"2023-09-25T12:25:24.038358","indexId":"70248874","displayToPublicDate":"2023-09-05T07:24:02","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3722,"text":"Water Resources Research","onlineIssn":"1944-7973","printIssn":"0043-1397","active":true,"publicationSubtype":{"id":10}},"title":"Importance of dense aquatic vegetation in seasonal phosphate and particle transport in an agricultural headwater stream","docAbstract":"<div class=\"article-section__content en main\"><p>Agricultural headwater streams and ditches commonly host dense stands of aquatic vegetation that grow and decay over seasons and exert physical and biological controls on the transport of nutrients from cropland to larger rivers. This study examined changes in the transport of phosphorus (P) in an agricultural drainage ditch in the Maumee River Basin (Ohio, USA) by conducting constant rate injections of a novel tracer mixture (conservative salt [Cl as NaCl], dissolved P [KH<sub>2</sub>PO<sub>4</sub>], and a fluorescent fine particle) in spring, summer, and fall. We quantified transport behavior for solutes and particles using a traditional transient storage modeling framework consisting of mobile and immobile storage zones connected by a first-order exchange rate constant. Transient storage was greatest during the spring, when thicker vegetation caused more pooling and flow stagnation, and decreased through fall, as vegetation thinned. Soluble P uptake lengths were 8.7 times longer in fall than spring, likely due to declines in biological uptake rates with colder temperatures and immobile zone storage with thinning vegetation. Particle capture lengths also decreased by a factor of 4.3 from fall to spring. With the increasing eutrophication of Lake Erie and waterbodies around the world that lie downstream from agricultural landscapes, it is beneficial to understand nutrient transport across watersheds, including small agricultural streams. This study highlights the physical and biological roles that aquatic vegetation plays in small agricultural streams by creating seasonally variable immobile zones that slow the flow of nutrients, providing surface area for biofilms, and capturing particles that bind nutrients.</p></div>","language":"English","publisher":"American Geophysical Union","doi":"10.1029/2022WR033782","usgsCitation":"Field, H.R., Sawyer, A.H., Welch, S.A., Benefiel, R.K., Mathie, D.M., Hood, J.M., Pawlowski, E.D., Karwan, D.L., Kreiling, R.M., Johnson, Z.I., Hanrahan, B.R., and King, K.W., 2023, Importance of dense aquatic vegetation in seasonal phosphate and particle transport in an agricultural headwater stream: Water Resources Research, v. 59, no. 9, e2022WR033782, 17 p., https://doi.org/10.1029/2022WR033782.","productDescription":"e2022WR033782, 17 p.","ipdsId":"IP-145730","costCenters":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"links":[{"id":442192,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1029/2022wr033782","text":"Publisher Index Page"},{"id":421126,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"59","issue":"9","noUsgsAuthors":false,"publicationDate":"2023-09-18","publicationStatus":"PW","contributors":{"authors":[{"text":"Field, Hannah R.","contributorId":330103,"corporation":false,"usgs":false,"family":"Field","given":"Hannah","email":"","middleInitial":"R.","affiliations":[{"id":78811,"text":"The Ohio State University, School of Earth Sciences, Columbus, OH, United States","active":true,"usgs":false}],"preferred":false,"id":883999,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Sawyer, Audrey H.","contributorId":330104,"corporation":false,"usgs":false,"family":"Sawyer","given":"Audrey","email":"","middleInitial":"H.","affiliations":[{"id":78811,"text":"The Ohio State University, School of Earth Sciences, Columbus, OH, United States","active":true,"usgs":false}],"preferred":false,"id":884000,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Welch, Susan A.","contributorId":330105,"corporation":false,"usgs":false,"family":"Welch","given":"Susan","email":"","middleInitial":"A.","affiliations":[{"id":78811,"text":"The Ohio State University, School of Earth Sciences, Columbus, OH, United States","active":true,"usgs":false}],"preferred":false,"id":884001,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Benefiel, Ryan K.","contributorId":330106,"corporation":false,"usgs":false,"family":"Benefiel","given":"Ryan","email":"","middleInitial":"K.","affiliations":[{"id":78811,"text":"The Ohio State University, School of Earth Sciences, Columbus, OH, United States","active":true,"usgs":false}],"preferred":false,"id":884002,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Mathie, Devan M.","contributorId":330107,"corporation":false,"usgs":false,"family":"Mathie","given":"Devan","email":"","middleInitial":"M.","affiliations":[{"id":78811,"text":"The Ohio State University, School of Earth Sciences, Columbus, OH, United States","active":true,"usgs":false}],"preferred":false,"id":884003,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Hood, James M.","contributorId":267332,"corporation":false,"usgs":false,"family":"Hood","given":"James","email":"","middleInitial":"M.","affiliations":[],"preferred":false,"id":884004,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Pawlowski, Ethan D.","contributorId":218062,"corporation":false,"usgs":false,"family":"Pawlowski","given":"Ethan","email":"","middleInitial":"D.","affiliations":[{"id":6626,"text":"University of Minnesota","active":true,"usgs":false}],"preferred":false,"id":884005,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Karwan, Diana L.","contributorId":207315,"corporation":false,"usgs":false,"family":"Karwan","given":"Diana","email":"","middleInitial":"L.","affiliations":[{"id":6626,"text":"University of Minnesota","active":true,"usgs":false}],"preferred":false,"id":884006,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Kreiling, Rebecca M. 0000-0002-9295-4156","orcid":"https://orcid.org/0000-0002-9295-4156","contributorId":202193,"corporation":false,"usgs":true,"family":"Kreiling","given":"Rebecca","middleInitial":"M.","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":884007,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Johnson, Zackary I.","contributorId":330108,"corporation":false,"usgs":false,"family":"Johnson","given":"Zackary","email":"","middleInitial":"I.","affiliations":[{"id":78814,"text":"Duke University, Nicholas School of the Environment, Duke Marine Laboratory, Beaufort, NC, United States","active":true,"usgs":false}],"preferred":false,"id":884008,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Hanrahan, Brittany R.","contributorId":330109,"corporation":false,"usgs":false,"family":"Hanrahan","given":"Brittany","email":"","middleInitial":"R.","affiliations":[{"id":78815,"text":"U.S. Department of Agriculture, Agricultural Research Service, Columbus, OH, United States","active":true,"usgs":false}],"preferred":false,"id":884009,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"King, Kevin W.","contributorId":330110,"corporation":false,"usgs":false,"family":"King","given":"Kevin","email":"","middleInitial":"W.","affiliations":[{"id":78815,"text":"U.S. Department of Agriculture, Agricultural Research Service, Columbus, OH, United States","active":true,"usgs":false}],"preferred":false,"id":884010,"contributorType":{"id":1,"text":"Authors"},"rank":12}]}}
,{"id":70252489,"text":"70252489 - 2023 - Mussel mass mortality in the Clinch River, USA: Metabolomics detects affected pathways and biomarkers of stress","interactions":[],"lastModifiedDate":"2024-03-26T11:48:59.363172","indexId":"70252489","displayToPublicDate":"2023-09-05T06:44:52","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3919,"text":"Conservation Physiology","onlineIssn":"2051-1434","active":true,"publicationSubtype":{"id":10}},"title":"Mussel mass mortality in the Clinch River, USA: Metabolomics detects affected pathways and biomarkers of stress","docAbstract":"<p class=\"chapter-para\">Biologists monitoring freshwater mussel (order Unionida) populations rely on behavioral, often subjective, signs to identify moribund (“sick”) or stressed mussels, such as gaping valves and slow response to probing, and they lack clinical indicators to support a diagnosis. As part of a multi-year study to investigate causes of reoccurring mortality of pheasantshell (<i>Ortmanniana pectorosa;</i><span>&nbsp;</span>synonym<span>&nbsp;</span><i>Actinonaias pectorosa</i>) in the Clinch River, Virginia and Tennessee, USA, we analyzed the hemolymph metabolome of a subset of mussels from the 2018 sampling period. Mussels at the mortality sites were diagnosed in the field as affected (case) or unaffected (control) based on behavioral and physical signs. Hemolymph was collected in the field by non-lethal methods from the anterior adductor muscle for analysis. We used ultra-high-performance liquid chromatography with quadrupole time-of-flight mass spectroscopy to detect targeted and untargeted metabolites in hemolymph and compared metabolomic profiles by field assessment of clinical status. Targeted biomarker analysis found 13 metabolites associated with field assessments of clinical status. Of these, increased gamma-linolenic acid and<span>&nbsp;</span><i>N</i>-methyl-<span class=\"small-caps\">L</span>-alanine were most indicative of case mussels, while adenine and inosine were the best indicators of control mussels. Five pathways in the targeted analysis differed by clinical status; two of these, purine metabolism and glycerophospholipid metabolism, were also indicated in the untargeted analysis. In the untargeted nalysis, 22 metabolic pathways were associated with clinical status. Many of the impacted pathways in the case group were catabolic processes, such as degradation of amino acids and fatty acids. Hierarchical clustering analysis matched clinical status in 72% (18 of 25) of mussels, with control mussels more frequently (5 of 16) not matching clinical status. Our study demonstrated that metabolomic analysis of hemolymph is suitable for assessing mussel condition and complements field-based indicators of health.</p>","language":"English","publisher":"Oxford University Press","doi":"10.1093/conphys/coad074","usgsCitation":"Putnam, J.G., Steiner, J.N., Richard, J., Leis, E., Goldberg, T., Dunn, C.D., Agbalog, R., Knowles, S., and Waller, D.L., 2023, Mussel mass mortality in the Clinch River, USA: Metabolomics detects affected pathways and biomarkers of stress: Conservation Physiology, v. 11, no. 1, coad074, 14 p., https://doi.org/10.1093/conphys/coad074.","productDescription":"coad074, 14 p.","ipdsId":"IP-136682","costCenters":[{"id":456,"text":"National Wildlife Health Center","active":true,"usgs":true},{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"links":[{"id":442195,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1093/conphys/coad074","text":"Publisher Index Page"},{"id":427095,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Tennessee, Virginia","otherGeospatial":"Clinch River","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -84.70963927890442,\n              37.816372869860245\n            ],\n            [\n              -84.70963927890442,\n              35.63282602764869\n            ],\n            [\n              -80.73258849765482,\n              35.63282602764869\n            ],\n            [\n              -80.73258849765482,\n              37.816372869860245\n            ],\n            [\n              -84.70963927890442,\n              37.816372869860245\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"11","issue":"1","noUsgsAuthors":false,"publicationDate":"2023-09-05","publicationStatus":"PW","contributors":{"authors":[{"text":"Putnam, Joel G. 0000-0002-5464-4587 jgputnam@usgs.gov","orcid":"https://orcid.org/0000-0002-5464-4587","contributorId":5783,"corporation":false,"usgs":true,"family":"Putnam","given":"Joel","email":"jgputnam@usgs.gov","middleInitial":"G.","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":897299,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Steiner, J. Nolan 0000-0003-2809-9009 jsteiner@usgs.gov","orcid":"https://orcid.org/0000-0003-2809-9009","contributorId":220768,"corporation":false,"usgs":true,"family":"Steiner","given":"J.","email":"jsteiner@usgs.gov","middleInitial":"Nolan","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":897300,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Richard, Jordon","contributorId":239869,"corporation":false,"usgs":false,"family":"Richard","given":"Jordon","email":"","affiliations":[{"id":48017,"text":"USFWS-Virginia Field Office","active":true,"usgs":false}],"preferred":false,"id":897301,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Leis, Eric","contributorId":179325,"corporation":false,"usgs":false,"family":"Leis","given":"Eric","affiliations":[],"preferred":false,"id":897302,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Goldberg, Tony","contributorId":211788,"corporation":false,"usgs":false,"family":"Goldberg","given":"Tony","affiliations":[{"id":38319,"text":"UW Madison","active":true,"usgs":false}],"preferred":false,"id":897303,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Dunn, Christopher D.","contributorId":225521,"corporation":false,"usgs":false,"family":"Dunn","given":"Christopher","email":"","middleInitial":"D.","affiliations":[{"id":41155,"text":"Department of Pathobiological Sciences, University of Wisconsin-Madison,","active":true,"usgs":false}],"preferred":false,"id":897304,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Agbalog, Rose","contributorId":239870,"corporation":false,"usgs":false,"family":"Agbalog","given":"Rose","affiliations":[{"id":48017,"text":"USFWS-Virginia Field Office","active":true,"usgs":false}],"preferred":false,"id":897305,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Knowles, Susan 0000-0002-0254-6491 sknowles@usgs.gov","orcid":"https://orcid.org/0000-0002-0254-6491","contributorId":5254,"corporation":false,"usgs":true,"family":"Knowles","given":"Susan","email":"sknowles@usgs.gov","affiliations":[{"id":456,"text":"National Wildlife Health Center","active":true,"usgs":true}],"preferred":true,"id":897306,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Waller, Diane L. 0000-0002-6104-810X dwaller@usgs.gov","orcid":"https://orcid.org/0000-0002-6104-810X","contributorId":5272,"corporation":false,"usgs":true,"family":"Waller","given":"Diane","email":"dwaller@usgs.gov","middleInitial":"L.","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":897307,"contributorType":{"id":1,"text":"Authors"},"rank":9}]}}
,{"id":70248272,"text":"70248272 - 2023 - Wind-modulated groundwater discharge along a microtidal Arctic coastline","interactions":[],"lastModifiedDate":"2023-09-06T11:47:24.361413","indexId":"70248272","displayToPublicDate":"2023-09-05T06:35:48","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1562,"text":"Environmental Research Letters","active":true,"publicationSubtype":{"id":10}},"title":"Wind-modulated groundwater discharge along a microtidal Arctic coastline","docAbstract":"<div class=\"article-text wd-jnl-art-abstract cf\"><p>Groundwater discharge transports dissolved constituents to the ocean, affecting coastal carbon budgets and water quality. However, the magnitude and mechanisms of groundwater exchange along rapidly transitioning Arctic coastlines are largely unknown due to limited observations. Here, using first-of-its-kind coastal Arctic groundwater timeseries data, we evaluate the magnitude and drivers of groundwater discharge to Alaska's Beaufort Sea coast. Darcy flux calculations reveal temporally variable groundwater fluxes, ranging from −6.5 cm d<sup>−1</sup><span>&nbsp;</span>(recharge) to 14.1 cm d<sup>−1</sup><span>&nbsp;</span>(discharge), with fluctuations in groundwater discharge or aquifer recharge over diurnal and multiday timescales during the open-water season. The average flux during the monitoring period of 4.9 cm d<sup>−1</sup><span>&nbsp;</span>is in line with previous estimates, but the maximum discharge exceeds previous estimates by over an order-of-magnitude. While the diurnal fluctuations are small due to the microtidal conditions, multiday variability is large and drives sustained periods of aquifer recharge and groundwater discharge. Results show that wind-driven lagoon water level changes are the dominant mechanism of fluctuations in land–sea hydraulic head gradients and, in turn, groundwater discharge. Given the microtidal conditions, low topographic relief, and limited rainfall along the Beaufort Sea coast, we identify wind as an important forcing mechanism of coastal groundwater discharge and aquifer recharge with implications for nearshore biogeochemistry. This study provides insights into groundwater flux dynamics along this coastline over time and highlights an oft overlooked discharge and circulation mechanism with implications towards refining solute export estimates to coastal Arctic waters.</p></div>","language":"English","publisher":"IOP Publishing","doi":"10.1088/1748-9326/acf0d8","usgsCitation":"Guimond, J., Demir, C., Kurylyk, B.L., Walvoord, M.A., McClelland, J., and Cardenas, M.B., 2023, Wind-modulated groundwater discharge along a microtidal Arctic coastline: Environmental Research Letters, v. 18, 094042, 10 p., https://doi.org/10.1088/1748-9326/acf0d8.","productDescription":"094042, 10 p.","ipdsId":"IP-155579","costCenters":[{"id":37277,"text":"WMA - Earth System Processes Division","active":true,"usgs":true}],"links":[{"id":442198,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1088/1748-9326/acf0d8","text":"Publisher Index Page"},{"id":420538,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Alaska","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -149.8787190288838,\n              70.63569535875706\n            ],\n            [\n              -149.8787190288838,\n              70.39401335666025\n            ],\n            [\n              -148.90750421618975,\n              70.39401335666025\n            ],\n            [\n              -148.90750421618975,\n              70.63569535875706\n            ],\n            [\n              -149.8787190288838,\n              70.63569535875706\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"18","noUsgsAuthors":false,"publicationDate":"2023-09-05","publicationStatus":"PW","contributors":{"authors":[{"text":"Guimond, Julia","contributorId":266043,"corporation":false,"usgs":false,"family":"Guimond","given":"Julia","email":"","affiliations":[{"id":24650,"text":"Dalhousie University","active":true,"usgs":false}],"preferred":false,"id":882179,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Demir, Casu","contributorId":329392,"corporation":false,"usgs":false,"family":"Demir","given":"Casu","email":"","affiliations":[{"id":29861,"text":"The University of Texas at Austin","active":true,"usgs":false}],"preferred":false,"id":882180,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Kurylyk, Barret L.","contributorId":176296,"corporation":false,"usgs":false,"family":"Kurylyk","given":"Barret","email":"","middleInitial":"L.","affiliations":[],"preferred":false,"id":882181,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Walvoord, Michelle A. 0000-0003-4269-8366","orcid":"https://orcid.org/0000-0003-4269-8366","contributorId":211843,"corporation":false,"usgs":true,"family":"Walvoord","given":"Michelle","email":"","middleInitial":"A.","affiliations":[{"id":37277,"text":"WMA - Earth System Processes Division","active":true,"usgs":true}],"preferred":true,"id":882182,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"McClelland, James W.","contributorId":255074,"corporation":false,"usgs":false,"family":"McClelland","given":"James W.","affiliations":[{"id":36422,"text":"University of Texas","active":true,"usgs":false}],"preferred":false,"id":882183,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Cardenas, M. Bayani","contributorId":181932,"corporation":false,"usgs":false,"family":"Cardenas","given":"M.","email":"","middleInitial":"Bayani","affiliations":[],"preferred":false,"id":882184,"contributorType":{"id":1,"text":"Authors"},"rank":6}]}}
,{"id":70249543,"text":"70249543 - 2023 - Using airborne electromagnetics to improve depth to bedrock estimates in Wisconsin","interactions":[],"lastModifiedDate":"2026-03-19T15:28:47.349369","indexId":"70249543","displayToPublicDate":"2023-09-04T10:21:36","publicationYear":"2023","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Using airborne electromagnetics to improve depth to bedrock estimates in Wisconsin","docAbstract":"<p>Depth to bedrock is an important factor in hydrologic systems. The thickness of glacial sediments overlying bedrock in Wisconsin controls the routing of groundwater in surficial aquifers and its <span>Depth to bedrock is often an important factor in hydrologic systems because hydraulic properties of bedrock and overlying sediments are typically appreciably different. For example, the thickness of glacial sediments overlying bedrock in Wisconsin controls the routing of groundwater in surficial aquifers and its connection with surface water bodies such as lakes and wetlands. In fractured bedrock environments, shallow bedrock can be vulnerable to degraded water quality when contaminants at the surface infiltrate quickly through permeable formations. Here, airborne electromagnetic surveys were acquired in three different parts of Wisconsin, totalling more than 5,700 flight line-kilometers, to improve understanding of depth to bedrock, the lithologic composition of overlying sediments, and as input structure for groundwater model development.</span></p>","conferenceTitle":"AEM2023 8th International Airborne Electromagnetics Workshop","conferenceDate":"September 3-7, 2023","conferenceLocation":"Fitzroy Island, Queensland, Australia","language":"English","publisher":"Australian Society of Exploration Geophysicists","doi":"10.5281/zenodo.10067960","usgsCitation":"Minsley, B.J., Crosbie, K.J., Duncker, J.J., Feinstein, D.T., Haas, L., Hart, D., Hunt, R.J., and Komiskey, M.J., 2023, Using airborne electromagnetics to improve depth to bedrock estimates in Wisconsin, AEM2023 8th International Airborne Electromagnetics Workshop, Fitzroy Island, Queensland, Australia, September 3-7, 2023, Extended abstract for AEM 2023 conference, https://doi.org/10.5281/zenodo.10067960.","productDescription":"Extended abstract for AEM 2023 conference","ipdsId":"IP-151339","costCenters":[{"id":35995,"text":"Geology, Geophysics, and Geochemistry Science Center","active":true,"usgs":true}],"links":[{"id":501312,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United 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,{"id":70248287,"text":"70248287 - 2023 - Simultaneous stream assessment of antibiotics, bacteria, antibiotic resistant bacteria, and antibiotic resistant genes in an agricultural region of the United States","interactions":[],"lastModifiedDate":"2023-09-20T16:26:41.379918","indexId":"70248287","displayToPublicDate":"2023-09-04T07:23:29","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3352,"text":"Science of the Total Environment","active":true,"publicationSubtype":{"id":10}},"title":"Simultaneous stream assessment of antibiotics, bacteria, antibiotic resistant bacteria, and antibiotic resistant genes in an agricultural region of the United States","docAbstract":"<div id=\"ab0005\" class=\"abstract author\"><div id=\"as0005\"><p id=\"sp0045\">Antimicrobial resistance is now recognized as a leading global threat to human health. Nevertheless, there currently is a limited understanding of the environment's role in the spread of AMR and antibiotic resistant genes (ARG). In 2019, the U.S. Geological Survey conducted the first statewide assessment of antibiotic resistant bacteria (ARB) and ARGs in surface water and bed sediment collected from 34 stream locations across Iowa. Environmental samples were analyzed for a suite of 29 antibiotics and plated on selective media for 15 types of bacteria growth; DNA was extracted from culture growth and used in downstream polymerase chain reaction (PCR) assays for the detection of 24 ARGs. ARGs encoding resistance to antibiotics of clinical importance to human health and disease prevention were prioritized as their presence in stream systems has the potential for environmental significance. Total coliforms,<span>&nbsp;</span><i>Escherichia coli</i><span>&nbsp;</span>(<i>E. coli</i>)<i>,</i><span>&nbsp;</span>and staphylococci were nearly ubiquitous in both stream water and stream bed sediment samples, with enterococci present in 97 % of water samples, and<span>&nbsp;</span><i>Salmonella</i><span>&nbsp;</span>spp. growth present in 94 % and 67 % of water and bed sediment samples. Bacteria enumerations indicate that high bacteria loads are common in Iowa's streams, with 23 (68 %) streams exceeding state guidelines for primary contact for<span>&nbsp;</span><i>E. coli</i><span>&nbsp;</span>in recreational waters and 6 (18 %) streams exceeding the secondary contact advisory level. Although antibiotic-resistant<span>&nbsp;</span><i>E. coli</i><span>&nbsp;</span>growth was detected from 40 % of water samples, vancomycin-resistant enterococci (VRE) and penicillinase-resistant<span>&nbsp;</span><i>Staphylococcus aureus</i><span>&nbsp;</span>(MRSA) colony growth was detected from nearly all water samples. A total of 14 different ARGs were detected from viable bacteria cells from 30 Iowa streams (88 %,<span>&nbsp;</span><i>n</i> = 34). Study results provide the first baseline understanding of the prevalence of ARB and ARGs throughout Iowa's waterways and health risk potential for humans, wildlife, and livestock using these waterways for drinking, irrigating, or recreating.</p></div></div>","language":"English","publisher":"Elsevier","doi":"10.1016/j.scitotenv.2023.166753","usgsCitation":"Givens, C.E., Kolpin, D., Hubbard, L.E., Meppelink, S.M., Cwiertny, D.M., Thompson, D.A., Lane, R.F., and Wilson, M.C., 2023, Simultaneous stream assessment of antibiotics, bacteria, antibiotic resistant bacteria, and antibiotic resistant genes in an agricultural region of the United States: Science of the Total Environment, v. 904, 166753, 14 p., https://doi.org/10.1016/j.scitotenv.2023.166753.","productDescription":"166753, 14 p.","ipdsId":"IP-151993","costCenters":[{"id":36532,"text":"Central Midwest Water Science Center","active":true,"usgs":true},{"id":37947,"text":"Upper Midwest Water Science 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,{"id":70258099,"text":"70258099 - 2023 - Gulf of Mexico Marine Assessment Project for Protected Species: Sea Turtles","interactions":[],"lastModifiedDate":"2024-09-04T12:20:19.119451","indexId":"70258099","displayToPublicDate":"2023-09-04T07:18:22","publicationYear":"2023","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":4,"text":"Other Government Series"},"title":"Gulf of Mexico Marine Assessment Project for Protected Species: Sea Turtles","docAbstract":"The overarching goal of the Gulf of Mexico Marine Assessment Project for Protected Species: sea turtles (GOMMAPPS) study was to collect broad-scale information on the distribution and abundance of sea turtles in the Gulf to inform seasonally- and spatially-explicit density estimates for priority species. GOMMAPPS represents a multi-agency partnership between BOEM, USFWS, NOAA, and USGS, all of whom collect information on large marine vertebrates to provide improved spatially-explicit density distributions for multiple management objectives. Though GOMMAPPS is intended to provide broad-scale information, specific locations identified for satellite tagging targeted regions of highest oil and gas activity (i.e., in the Central and Western Gulf of Mexico).","language":"English","publisher":"Bureau of Ocean Energy Management","usgsCitation":"Lamont, M., and Hart, K., 2023, Gulf of Mexico Marine Assessment Project for Protected Species: Sea Turtles, vii, 39 p.","productDescription":"vii, 39 p.","ipdsId":"IP-157525","costCenters":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"links":[{"id":433440,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":433433,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://espis.boem.gov/Final%20Reports/BOEM_2023-064.pdf"}],"country":"United States","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -100.52605800406508,\n              32.040174557650204\n            ],\n            [\n              -100.52605800406508,\n              24.541587681308485\n            ],\n            [\n              -79.95965175406549,\n              24.541587681308485\n            ],\n            [\n              -79.95965175406549,\n              32.040174557650204\n            ],\n            [\n              -100.52605800406508,\n              32.040174557650204\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Lamont, Margaret 0000-0001-7520-6669","orcid":"https://orcid.org/0000-0001-7520-6669","contributorId":222403,"corporation":false,"usgs":true,"family":"Lamont","given":"Margaret","affiliations":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"preferred":true,"id":912083,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Hart, Kristen 0000-0002-5257-7974","orcid":"https://orcid.org/0000-0002-5257-7974","contributorId":220333,"corporation":false,"usgs":true,"family":"Hart","given":"Kristen","affiliations":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"preferred":true,"id":912084,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70248362,"text":"70248362 - 2023 - Sharing FAIR monitoring program data improves discoverability and reuse","interactions":[],"lastModifiedDate":"2023-09-12T19:06:42.996433","indexId":"70248362","displayToPublicDate":"2023-09-04T07:18:04","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":16706,"text":"Enviornmental Monitoring and Assessment","active":true,"publicationSubtype":{"id":10}},"title":"Sharing FAIR monitoring program data improves discoverability and reuse","docAbstract":"<div id=\"Abs1-section\" class=\"c-article-section\"><div id=\"Abs1-content\" class=\"c-article-section__content\"><p>Data resulting from environmental monitoring programs are valuable assets for natural resource managers, decision-makers, and researchers. These data are often collected to inform specific reporting needs or decisions with a specific timeframe. While program-oriented data and related publications are effective for meeting program goals, sharing well-documented data and metadata allows users to research aspects outside initial program intentions. As part of an effort to integrate data from four long-term large-scale US aquatic monitoring programs, we evaluated the original datasets against the FAIR (Findable, Accessible, Interoperable, Reusable) data principles and offer recommendations and lessons learned. Differences in data governance across these programs resulted in considerable effort to access and reuse the original datasets. Requirements, guidance, and resources available to support data publishing and documentation are inconsistent across agencies and monitoring programs, resulting in various data formats and storage locations that are not easily found, accessed, or reused. Making monitoring data FAIR will reduce barriers to data discovery and reuse. Programs are continuously striving to improve data management, data products, and metadata; however, provision of related tools, consistent guidelines and standards, and more resources to do this work is needed. Given the value of these data and the significant effort required to access and reuse them, actions and steps intended on improving data documentation and accessibility are described.</p></div></div>","language":"English","publisher":"Springer","doi":"10.1007/s10661-023-11788-4","usgsCitation":"Bayer, J.M., Scully, R., Dlabola, E.K., Courtwright, J., Hirsch, C.L., Hockman-Wert, D.P., Miller, S.W., Roper, B.B., Saunders, W.C., and Snyder, M.N., 2023, Sharing FAIR monitoring program data improves discoverability and reuse: Enviornmental Monitoring and Assessment, v. 195, 1141, 12 p., https://doi.org/10.1007/s10661-023-11788-4.","productDescription":"1141, 12 p.","ipdsId":"IP-146005","costCenters":[{"id":290,"text":"Forest and Rangeland Ecosystem Science Center","active":false,"usgs":true}],"links":[{"id":420657,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"http://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"195","noUsgsAuthors":false,"publicationDate":"2023-09-04","publicationStatus":"PW","contributors":{"authors":[{"text":"Bayer, Jennifer M. 0000-0001-9564-3110 jbayer@usgs.gov","orcid":"https://orcid.org/0000-0001-9564-3110","contributorId":3393,"corporation":false,"usgs":true,"family":"Bayer","given":"Jennifer","email":"jbayer@usgs.gov","middleInitial":"M.","affiliations":[{"id":5077,"text":"Northwest Regional Director's Office","active":true,"usgs":true},{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true},{"id":5067,"text":"Northeast Regional Director's Office","active":true,"usgs":true}],"preferred":true,"id":882683,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Scully, Rebecca A 0000-0003-0704-8907","orcid":"https://orcid.org/0000-0003-0704-8907","contributorId":329593,"corporation":false,"usgs":false,"family":"Scully","given":"Rebecca A","affiliations":[{"id":6654,"text":"USFWS","active":true,"usgs":false}],"preferred":false,"id":882684,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Dlabola, Erin K. 0000-0002-2510-9948","orcid":"https://orcid.org/0000-0002-2510-9948","contributorId":329594,"corporation":false,"usgs":false,"family":"Dlabola","given":"Erin","email":"","middleInitial":"K.","affiliations":[{"id":20304,"text":"Pacific States Marine Fisheries Commission","active":true,"usgs":false}],"preferred":false,"id":882685,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Courtwright, Jennifer L","contributorId":328473,"corporation":false,"usgs":false,"family":"Courtwright","given":"Jennifer L","affiliations":[],"preferred":false,"id":882687,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Hirsch, Christine L","contributorId":329599,"corporation":false,"usgs":false,"family":"Hirsch","given":"Christine","email":"","middleInitial":"L","affiliations":[{"id":7134,"text":"USFS","active":true,"usgs":false}],"preferred":false,"id":882688,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Hockman-Wert, David P 0000-0003-2436-6237","orcid":"https://orcid.org/0000-0003-2436-6237","contributorId":228969,"corporation":false,"usgs":false,"family":"Hockman-Wert","given":"David","email":"","middleInitial":"P","affiliations":[{"id":37389,"text":"U.S. Forest Service","active":true,"usgs":false}],"preferred":false,"id":882689,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Miller, Scott W.","contributorId":237002,"corporation":false,"usgs":false,"family":"Miller","given":"Scott","email":"","middleInitial":"W.","affiliations":[{"id":6682,"text":"Utah State University","active":true,"usgs":false}],"preferred":false,"id":882690,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Roper, Brett B.","contributorId":120701,"corporation":false,"usgs":false,"family":"Roper","given":"Brett","email":"","middleInitial":"B.","affiliations":[],"preferred":false,"id":882691,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Saunders, W. Carl 0000-0002-2066-9276","orcid":"https://orcid.org/0000-0002-2066-9276","contributorId":328474,"corporation":false,"usgs":false,"family":"Saunders","given":"W.","email":"","middleInitial":"Carl","affiliations":[{"id":36493,"text":"USDA Forest Service","active":true,"usgs":false}],"preferred":false,"id":882692,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Snyder, Marcia N","contributorId":329601,"corporation":false,"usgs":false,"family":"Snyder","given":"Marcia","email":"","middleInitial":"N","affiliations":[{"id":7134,"text":"USFS","active":true,"usgs":false}],"preferred":false,"id":882693,"contributorType":{"id":1,"text":"Authors"},"rank":10}]}}
,{"id":70248273,"text":"70248273 - 2023 - Supplying ecosystem services on US rangelands","interactions":[],"lastModifiedDate":"2023-12-21T14:19:30.07755","indexId":"70248273","displayToPublicDate":"2023-09-04T07:15:53","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":5791,"text":"Nature Sustainability","active":true,"publicationSubtype":{"id":10}},"title":"Supplying ecosystem services on US rangelands","docAbstract":"<div id=\"Abs1-section\" class=\"c-article-section\"><div id=\"Abs1-content\" class=\"c-article-section__content\"><p>Rangelands comprise 40% of the conterminous United States and they supply essential ecosystem services to society. A scenario assessment was conducted to determine how accelerating biophysical and societal drivers may modify their future availability. Four scenarios emerged: two may maintain rural communities by sustaining the prevailing ecosystem service of beef cattle production, and two may transform rural communities through expansion of renewable energy technologies and infusion of external capital from amenity land sales. Collaborative organizations representing diverse societal sectors may most effectively identify and manage trade-offs among ecosystem service availability, and equitably prioritize food and energy security, environmental quality and cultural identity.</p></div></div>","language":"English","publisher":"Springer Nature","doi":"10.1038/s41893-023-01194-6","usgsCitation":"Briske, D.D., Archer, S.R., Burchfield, E., Burnidge, W., Derner, J.D., Gosnell, H., Hatfield, J., Kazanski, C.E., Khalil, M., Lark, T.J., Nagler, P.L., Sala, O.E., Sayre, N.F., and Stackhouse-Lawson, K.R., 2023, Supplying ecosystem services on US rangelands: Nature Sustainability, v. 6, p. 1524-1532, https://doi.org/10.1038/s41893-023-01194-6.","productDescription":"9 p.","startPage":"1524","endPage":"1532","ipdsId":"IP-145564","costCenters":[{"id":568,"text":"Southwest Biological Science Center","active":true,"usgs":true}],"links":[{"id":420544,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -100.21897102705516,\n              49.05254244108747\n            ],\n            [\n              -124.99349769708789,\n              49.05254244108747\n            ],\n            [\n              -124.99349769708789,\n              28.79719214456398\n            ],\n            [\n              -100.21897102705516,\n              28.79719214456398\n            ],\n            [\n              -100.21897102705516,\n              49.05254244108747\n            ]\n          ]\n        ],\n        \"type\": \"Polygon\"\n      }\n    }\n  ]\n}","volume":"6","noUsgsAuthors":false,"publicationDate":"2023-09-04","publicationStatus":"PW","contributors":{"authors":[{"text":"Briske, David D.","contributorId":329393,"corporation":false,"usgs":false,"family":"Briske","given":"David","email":"","middleInitial":"D.","affiliations":[{"id":78577,"text":"Ecology & Conservation Biology, Texas A&M University, College Station, Texas 77843-2258","active":true,"usgs":false}],"preferred":false,"id":882185,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Archer, Steven R.","contributorId":139043,"corporation":false,"usgs":false,"family":"Archer","given":"Steven","email":"","middleInitial":"R.","affiliations":[{"id":12625,"text":"School of Natural Resources and the Environment, University of Arizona, Tucson, AZ, 85721, USA","active":true,"usgs":false}],"preferred":false,"id":882186,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Burchfield, Emily","contributorId":329394,"corporation":false,"usgs":false,"family":"Burchfield","given":"Emily","email":"","affiliations":[{"id":78578,"text":"Department of Environmental Science, Emory University, Atlanta, Georgia, 30322","active":true,"usgs":false}],"preferred":false,"id":882187,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Burnidge, William","contributorId":329395,"corporation":false,"usgs":false,"family":"Burnidge","given":"William","email":"","affiliations":[{"id":78579,"text":"The Nature Conservancy, Denver, Colorado","active":true,"usgs":false}],"preferred":false,"id":882188,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Derner, Justin D.","contributorId":169766,"corporation":false,"usgs":false,"family":"Derner","given":"Justin","email":"","middleInitial":"D.","affiliations":[{"id":25583,"text":"USDA-ARS Central Plains Experimental Range, Cheyenne, WY 82009","active":true,"usgs":false}],"preferred":false,"id":882189,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Gosnell, Hannah","contributorId":192214,"corporation":false,"usgs":false,"family":"Gosnell","given":"Hannah","email":"","affiliations":[],"preferred":false,"id":882190,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Hatfield, Jerry","contributorId":329396,"corporation":false,"usgs":false,"family":"Hatfield","given":"Jerry","affiliations":[{"id":78580,"text":"(retired) National Laboratory for Agriculture and the Environment, USDA-ARS, Ames, Iowa","active":true,"usgs":false}],"preferred":false,"id":882191,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Kazanski, Clare E.","contributorId":293448,"corporation":false,"usgs":false,"family":"Kazanski","given":"Clare","email":"","middleInitial":"E.","affiliations":[{"id":63299,"text":"The Nature Conservancy, Minneapolis, Minnesota, USA","active":true,"usgs":false}],"preferred":false,"id":882192,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Khalil, Mona 0000-0002-6046-1293 mkhalil@usgs.gov","orcid":"https://orcid.org/0000-0002-6046-1293","contributorId":174228,"corporation":false,"usgs":true,"family":"Khalil","given":"Mona","email":"mkhalil@usgs.gov","affiliations":[{"id":506,"text":"Office of the AD Ecosystems","active":true,"usgs":true}],"preferred":true,"id":882224,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Lark, Tyler J.","contributorId":211637,"corporation":false,"usgs":false,"family":"Lark","given":"Tyler","email":"","middleInitial":"J.","affiliations":[{"id":38289,"text":"Center for Sustainability and the Global Environment, University of Wisconsin-Madison, Madison, WI 53726, USA","active":true,"usgs":false}],"preferred":false,"id":882194,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Nagler, Pamela L. 0000-0003-0674-103X pnagler@usgs.gov","orcid":"https://orcid.org/0000-0003-0674-103X","contributorId":1398,"corporation":false,"usgs":true,"family":"Nagler","given":"Pamela","email":"pnagler@usgs.gov","middleInitial":"L.","affiliations":[{"id":568,"text":"Southwest Biological Science Center","active":true,"usgs":true}],"preferred":true,"id":882195,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Sala, Osvaldo E.","contributorId":139047,"corporation":false,"usgs":false,"family":"Sala","given":"Osvaldo","email":"","middleInitial":"E.","affiliations":[{"id":12629,"text":"Arizona State University, Tempe, AZ  (DETAIL TO BE ADDED)","active":true,"usgs":false}],"preferred":false,"id":882196,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Sayre, Nathan F.","contributorId":139044,"corporation":false,"usgs":false,"family":"Sayre","given":"Nathan","email":"","middleInitial":"F.","affiliations":[{"id":12626,"text":"Department of Geography, University of California, Berkeley, CA 94720, USA","active":true,"usgs":false}],"preferred":false,"id":882197,"contributorType":{"id":1,"text":"Authors"},"rank":13},{"text":"Stackhouse-Lawson, Kimberly R.","contributorId":329397,"corporation":false,"usgs":false,"family":"Stackhouse-Lawson","given":"Kimberly","email":"","middleInitial":"R.","affiliations":[{"id":78581,"text":"AgNext, Colorado State University, Fort Collins, Colorado 80523","active":true,"usgs":false}],"preferred":false,"id":882198,"contributorType":{"id":1,"text":"Authors"},"rank":14}]}}
,{"id":70248262,"text":"70248262 - 2023 - Phragmites management in high water: Cutting plants under water limits biomass production, carbohydrate storage, and rhizome viability","interactions":[],"lastModifiedDate":"2023-11-07T15:52:28.16871","indexId":"70248262","displayToPublicDate":"2023-09-04T07:07:26","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3751,"text":"Wetlands Ecology and Management","active":true,"publicationSubtype":{"id":10}},"title":"Phragmites management in high water: Cutting plants under water limits biomass production, carbohydrate storage, and rhizome viability","docAbstract":"<div id=\"Abs1-section\" class=\"c-article-section\"><div id=\"Abs1-content\" class=\"c-article-section__content\"><p>Invasion of<span>&nbsp;</span><i>Phragmites australis</i><span>&nbsp;</span>(common reed) in wetlands throughout North America, and particularly the Laurentian Great Lakes Basin, poses significant ecological problems. The extended period of low Great Lakes water levels from 2000 to 2013 created conditions for large expansions of<span>&nbsp;</span><i>Phragmites</i><span>&nbsp;</span>in the Great Lakes coastal zone. The following extended period of high water in the Great Lakes during late 2010’s, culminating in record high lake levels in 2020 allowed managers to take advantage of high water by using a cut-to-drown management strategy (i.e., cutting plants below the water surface to stop the flow of atmospheric gases) to control<span>&nbsp;</span><i>Phragmites</i><span>&nbsp;</span>populations. To examine the efficacy of a cut-to-drown control strategy, we conducted a controlled-greenhouse study that tested the effect of submergence and timing of cutting (early or late in growing season) on<span>&nbsp;</span><i>Phragmites</i><span>&nbsp;</span>growth and viability post treatment. To evaluate<span>&nbsp;</span><i>Phragmites</i><span>&nbsp;</span>growth and viability, we measured belowground biomass, rhizome non-structural carbohydrate content (NSC), and rhizome viability following a cut-to-drown treatment. Applying a cut-to-drown treatment reduced average belowground biomass production up to 99%, limited rhizome NSC content up to 83%, and inhibited rhizome viability, regardless of timing of cutting treatments. These results suggest that under high-water conditions, utilizing a cut-to-drown strategy has potential for being a useful control mechanism for<span>&nbsp;</span><i>Phragmites</i>. However, further research is needed to determine to what extent these results will lead to sustained reductions in growth and viability under field conditions, where rhizome belowground biomass and storage capacity are much larger.</p></div></div>","language":"English","publisher":"Springer","doi":"10.1007/s11273-023-09946-z","usgsCitation":"Widin, S.L., Bickford, W.A., and Kowalski, K.P., 2023, Phragmites management in high water: Cutting plants under water limits biomass production, carbohydrate storage, and rhizome viability: Wetlands Ecology and Management, v. 31, p. 745-746, https://doi.org/10.1007/s11273-023-09946-z.","productDescription":"12 p.","startPage":"745","endPage":"746","ipdsId":"IP-147176","costCenters":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"links":[{"id":435192,"rank":2,"type":{"id":30,"text":"Data Release"},"url":"https://doi.org/10.5066/P9KM7HJT","text":"USGS data release","linkHelpText":"2021 USGS Phragmites australis Greenhouse Submergence Experiment Data conducted in Ann Arbor, MI"},{"id":420542,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"31","noUsgsAuthors":false,"publicationDate":"2023-09-04","publicationStatus":"PW","contributors":{"authors":[{"text":"Widin, Spenser L. 0000-0002-6470-4061","orcid":"https://orcid.org/0000-0002-6470-4061","contributorId":303341,"corporation":false,"usgs":true,"family":"Widin","given":"Spenser","email":"","middleInitial":"L.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":882140,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Bickford, Wesley A. 0000-0001-7612-1325 wbickford@usgs.gov","orcid":"https://orcid.org/0000-0001-7612-1325","contributorId":5687,"corporation":false,"usgs":true,"family":"Bickford","given":"Wesley","email":"wbickford@usgs.gov","middleInitial":"A.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":882141,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Kowalski, Kurt P. 0000-0002-2501-2601 kkowalski@usgs.gov","orcid":"https://orcid.org/0000-0002-2501-2601","contributorId":303342,"corporation":false,"usgs":true,"family":"Kowalski","given":"Kurt","email":"kkowalski@usgs.gov","middleInitial":"P.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":882142,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70248340,"text":"70248340 - 2023 - On the origin and current distribution of the Oceania Snake-Eyed Skink (Cryptoblepharus poecilopleurus) in the Hawaiian archipelago","interactions":[],"lastModifiedDate":"2023-09-08T12:04:17.590648","indexId":"70248340","displayToPublicDate":"2023-09-04T07:01:12","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2990,"text":"Pacific Science","active":true,"publicationSubtype":{"id":10}},"title":"On the origin and current distribution of the Oceania Snake-Eyed Skink (Cryptoblepharus poecilopleurus) in the Hawaiian archipelago","docAbstract":"<div class=\"div0\"><div class=\"row ArticleContentRow\"><p id=\"ID0EF\" class=\"first\">Because of its extreme isolation and lack of historical connection to a mainland, the Hawaiian Archipelago is thought to have no native nonvolant terrestrial reptiles. Several squamate species have been introduced to the archipelago, likely starting with early Polynesian contact, and increasing as human traffic in the Pacific has amplified. Of the earlier introductions, one species of skink,<span>&nbsp;</span><i>Cryptoblepharus poecilopleurus</i>, belongs to a genus known for its ability to naturally disperse long distances, even across oceans. The earliest herpetofaunal surveys from Hawai‘i describe the skink as widespread and abundant across the archipelago. A recent phylogenetic analysis reveals substantial haplotype divergence between Hawaiian individuals and other known populations in the Pacific, raising the possibility that this species was an early and natural arrival to the archipelago before human contact. Recent surveys suggest that the species has undergone a dramatic reduction in range across the archipelago, possibly due to the invasion of highly competitive species. Given this information, we aim to further assess the origin of<span>&nbsp;</span><i>C. poecilopleurus</i><span>&nbsp;</span>in Hawai‘i, determine its current range, and suggest specific needs for future work. Here, we review the earliest European voyages in the Pacific that are known to have sampled<span>&nbsp;</span><i>C. poecilopleurus</i>, review literature and museum specimens to develop an understanding of this species’ history in the islands, survey the island of O‘ahu to characterize its current range, and provide preliminary genetic analyses to show the relationship of the Hawai’i populations to the rest of the Pacific.</p></div></div>","language":"English","publisher":"BioOne","doi":"10.2984/77.1.5","usgsCitation":"Alvarez, V., Fisher, S., Barley, A.J., Donmoyer, K., Blom, M., Thomson, R., and Fisher, R., 2023, On the origin and current distribution of the Oceania Snake-Eyed Skink (Cryptoblepharus poecilopleurus) in the Hawaiian archipelago: Pacific Science, v. 77, no. 1, p. 87-101, https://doi.org/10.2984/77.1.5.","productDescription":"15 p.","startPage":"87","endPage":"101","ipdsId":"IP-153011","costCenters":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"links":[{"id":420654,"type":{"id":24,"text":"Thumbnail"},"url":"http://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United 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L.","contributorId":150242,"corporation":false,"usgs":false,"family":"Donmoyer","given":"Kevin","middleInitial":"L.","affiliations":[{"id":17944,"text":"University of Hawaii, Pacific Cooperative Studies Unit","active":true,"usgs":false}],"preferred":false,"id":882618,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Blom, Mozes P. K.","contributorId":206162,"corporation":false,"usgs":false,"family":"Blom","given":"Mozes P. K.","affiliations":[{"id":37265,"text":"Naturhistoriska Riksmuseet, Sweden","active":true,"usgs":false}],"preferred":false,"id":882619,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Thomson, Robert C.","contributorId":245973,"corporation":false,"usgs":false,"family":"Thomson","given":"Robert C.","affiliations":[{"id":49393,"text":"School of Life Sciences, University of Hawaiʻi, 2500 Campus Road, Honolulu, HI 96822, USA","active":true,"usgs":false}],"preferred":false,"id":882620,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Fisher, Robert N. 0000-0002-2956-3240","orcid":"https://orcid.org/0000-0002-2956-3240","contributorId":51675,"corporation":false,"usgs":true,"family":"Fisher","given":"Robert N.","affiliations":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"preferred":true,"id":882621,"contributorType":{"id":1,"text":"Authors"},"rank":7}]}}
,{"id":70249565,"text":"70249565 - 2023 - Positioning aquatic animals with acoustic transmitters","interactions":[],"lastModifiedDate":"2023-10-17T11:55:31.610527","indexId":"70249565","displayToPublicDate":"2023-09-04T06:49:17","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2717,"text":"Methods in Ecology and Evolution","active":true,"publicationSubtype":{"id":10}},"title":"Positioning aquatic animals with acoustic transmitters","docAbstract":"<ol class=\"\"><li>Geolocating aquatic animals with acoustic tags has been ongoing for decades, relying on the detection of acoustic signals at multiple receivers with known positions to calculate a 2D or 3D position, and ultimately recreate the path of an aquatic animal from detections at fixed stations.</li><li>This method of underwater geolocation&nbsp;is evolving with new software and hardware options available to help investigators design studies and calculate positions using solvers based predominantly on time-difference-of-arrival and time-of-arrival.</li><li>We provide an overview of the considerations necessary to implement positioning in aquatic acoustic telemetry studies, including how to design arrays of receivers, test performance, synchronize receiver clocks and calculate positions from the detection data. We additionally present some common positioning algorithms, including both the free open-source solvers and the ‘black-box’ methods provided by some manufacturers for calculating positions.</li><li>This paper is the first to provide a comprehensive overview of methods and considerations for designing and implementing better positioning studies that will support users, and encourage further knowledge advances in aquatic systems.</li></ol>","language":"English","publisher":"British Ecological Society","doi":"10.1111/2041-210X.14191","usgsCitation":"Lennox, R.J., Aarestrup, K., Alos, J., Arlinghaus, R., Aspillaga, E., Bertram, M.G., Birnie-Gauvin, K., Brodin, T., Cooke, S., Dahlmo, L.S., Dhellemmes, F., Gjelland, K.O., Hellstrom, G., Hershey, H., Holbrook, C., Klefoth, T., Lowerre-Barbieri, S.K., Monk, C.T., Nilsen, C.I., Pauwels, I., Pickholtz, R., Prchalova, M., Reubens, J., Říha, M., Villegas-Rios, D., Vollset, K.W., Westrelin, S., and Baktoft, H., 2023, Positioning aquatic animals with acoustic transmitters: Methods in Ecology and Evolution, v. 14, no. 10, p. 2514-2530, https://doi.org/10.1111/2041-210X.14191.","productDescription":"17 p.","startPage":"2514","endPage":"2530","ipdsId":"IP-153443","costCenters":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"links":[{"id":442208,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1111/2041-210x.14191","text":"Publisher Index Page"},{"id":421937,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"14","issue":"10","noUsgsAuthors":false,"publicationDate":"2023-09-04","publicationStatus":"PW","contributors":{"authors":[{"text":"Lennox, Robert J.","contributorId":198273,"corporation":false,"usgs":false,"family":"Lennox","given":"Robert","email":"","middleInitial":"J.","affiliations":[],"preferred":false,"id":886222,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Aarestrup, Kim","contributorId":203992,"corporation":false,"usgs":false,"family":"Aarestrup","given":"Kim","email":"","affiliations":[{"id":36789,"text":"Danmarks Tekniske Universitet","active":true,"usgs":false}],"preferred":false,"id":886223,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Alos, Josep","contributorId":330921,"corporation":false,"usgs":false,"family":"Alos","given":"Josep","email":"","affiliations":[{"id":79064,"text":"Instituto Mediterráneo de Estudios Avanzados","active":true,"usgs":false}],"preferred":false,"id":886224,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Arlinghaus, Robert","contributorId":32425,"corporation":false,"usgs":false,"family":"Arlinghaus","given":"Robert","email":"","affiliations":[{"id":17980,"text":"Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Berlin, Germany","active":true,"usgs":false}],"preferred":false,"id":886225,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Aspillaga, Eneko","contributorId":330922,"corporation":false,"usgs":false,"family":"Aspillaga","given":"Eneko","email":"","affiliations":[{"id":79064,"text":"Instituto Mediterráneo de Estudios Avanzados","active":true,"usgs":false}],"preferred":false,"id":886226,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Bertram, Michael G.","contributorId":257463,"corporation":false,"usgs":false,"family":"Bertram","given":"Michael","email":"","middleInitial":"G.","affiliations":[{"id":52030,"text":"Swedish University of Agricultural Sciences, Umeå, Sweden","active":true,"usgs":false}],"preferred":false,"id":886227,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Birnie-Gauvin, Kim","contributorId":272554,"corporation":false,"usgs":false,"family":"Birnie-Gauvin","given":"Kim","email":"","affiliations":[],"preferred":false,"id":886228,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Brodin, Tomas","contributorId":212851,"corporation":false,"usgs":false,"family":"Brodin","given":"Tomas","email":"","affiliations":[{"id":24847,"text":"Umea University","active":true,"usgs":false}],"preferred":false,"id":886229,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Cooke, Steven J.","contributorId":56132,"corporation":false,"usgs":false,"family":"Cooke","given":"Steven J.","affiliations":[{"id":36574,"text":"Carleton University, Ottawa, Ontario","active":true,"usgs":false}],"preferred":false,"id":886230,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Dahlmo, Lotte S.","contributorId":330923,"corporation":false,"usgs":false,"family":"Dahlmo","given":"Lotte","email":"","middleInitial":"S.","affiliations":[{"id":79065,"text":"NORCE Norwegian Research Centre; University of Bergen","active":true,"usgs":false}],"preferred":false,"id":886231,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Dhellemmes, Felicie","contributorId":330924,"corporation":false,"usgs":false,"family":"Dhellemmes","given":"Felicie","email":"","affiliations":[{"id":18001,"text":"Leibniz Institute of Freshwater Ecology and Inland Fisheries","active":true,"usgs":false}],"preferred":false,"id":886232,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Gjelland, Karl O.","contributorId":330925,"corporation":false,"usgs":false,"family":"Gjelland","given":"Karl","email":"","middleInitial":"O.","affiliations":[{"id":33046,"text":"Norwegian Institute for Nature Research","active":true,"usgs":false}],"preferred":false,"id":886233,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Hellstrom, Gustav","contributorId":330926,"corporation":false,"usgs":false,"family":"Hellstrom","given":"Gustav","email":"","affiliations":[{"id":12666,"text":"Swedish University of Agricultural Sciences","active":true,"usgs":false}],"preferred":false,"id":886234,"contributorType":{"id":1,"text":"Authors"},"rank":13},{"text":"Hershey, Henry","contributorId":330927,"corporation":false,"usgs":false,"family":"Hershey","given":"Henry","email":"","affiliations":[{"id":13360,"text":"Auburn University","active":true,"usgs":false}],"preferred":false,"id":886235,"contributorType":{"id":1,"text":"Authors"},"rank":14},{"text":"Holbrook, Christopher M. 0000-0001-8203-6856 cholbrook@usgs.gov","orcid":"https://orcid.org/0000-0001-8203-6856","contributorId":139681,"corporation":false,"usgs":true,"family":"Holbrook","given":"Christopher","email":"cholbrook@usgs.gov","middleInitial":"M.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":886236,"contributorType":{"id":1,"text":"Authors"},"rank":15},{"text":"Klefoth, Thomas","contributorId":330928,"corporation":false,"usgs":false,"family":"Klefoth","given":"Thomas","email":"","affiliations":[{"id":79067,"text":"Hochschule Bremen","active":true,"usgs":false}],"preferred":false,"id":886237,"contributorType":{"id":1,"text":"Authors"},"rank":16},{"text":"Lowerre-Barbieri, Susan K.","contributorId":189591,"corporation":false,"usgs":false,"family":"Lowerre-Barbieri","given":"Susan","email":"","middleInitial":"K.","affiliations":[],"preferred":false,"id":886238,"contributorType":{"id":1,"text":"Authors"},"rank":17},{"text":"Monk, Christopher T.","contributorId":330929,"corporation":false,"usgs":false,"family":"Monk","given":"Christopher","email":"","middleInitial":"T.","affiliations":[{"id":36241,"text":"GEOMAR Helmholtz Centre for Ocean Research Kiel","active":true,"usgs":false}],"preferred":false,"id":886239,"contributorType":{"id":1,"text":"Authors"},"rank":18},{"text":"Nilsen, Cecilie Iden","contributorId":330930,"corporation":false,"usgs":false,"family":"Nilsen","given":"Cecilie","email":"","middleInitial":"Iden","affiliations":[{"id":79065,"text":"NORCE Norwegian Research Centre; University of Bergen","active":true,"usgs":false}],"preferred":false,"id":886240,"contributorType":{"id":1,"text":"Authors"},"rank":19},{"text":"Pauwels, Ina","contributorId":330931,"corporation":false,"usgs":false,"family":"Pauwels","given":"Ina","email":"","affiliations":[{"id":64542,"text":"Flanders Marine Institute","active":true,"usgs":false}],"preferred":false,"id":886241,"contributorType":{"id":1,"text":"Authors"},"rank":20},{"text":"Pickholtz, Renanel","contributorId":330932,"corporation":false,"usgs":false,"family":"Pickholtz","given":"Renanel","email":"","affiliations":[{"id":34474,"text":"Tel Aviv University","active":true,"usgs":false}],"preferred":false,"id":886242,"contributorType":{"id":1,"text":"Authors"},"rank":21},{"text":"Prchalova, Marie","contributorId":330933,"corporation":false,"usgs":false,"family":"Prchalova","given":"Marie","email":"","affiliations":[{"id":79068,"text":"Biology Centre of Czech Academy of Sciences","active":true,"usgs":false}],"preferred":false,"id":886243,"contributorType":{"id":1,"text":"Authors"},"rank":22},{"text":"Reubens, Jan","contributorId":330934,"corporation":false,"usgs":false,"family":"Reubens","given":"Jan","email":"","affiliations":[{"id":64542,"text":"Flanders Marine Institute","active":true,"usgs":false}],"preferred":false,"id":886244,"contributorType":{"id":1,"text":"Authors"},"rank":23},{"text":"Říha, Milan","contributorId":330935,"corporation":false,"usgs":false,"family":"Říha","given":"Milan","affiliations":[{"id":79068,"text":"Biology Centre of Czech Academy of Sciences","active":true,"usgs":false}],"preferred":false,"id":886245,"contributorType":{"id":1,"text":"Authors"},"rank":24},{"text":"Villegas-Rios, David","contributorId":330936,"corporation":false,"usgs":false,"family":"Villegas-Rios","given":"David","email":"","affiliations":[{"id":79069,"text":"Instituto de Investigaciones Marinas","active":true,"usgs":false}],"preferred":false,"id":886246,"contributorType":{"id":1,"text":"Authors"},"rank":25},{"text":"Vollset, Knut Wiik","contributorId":330937,"corporation":false,"usgs":false,"family":"Vollset","given":"Knut","email":"","middleInitial":"Wiik","affiliations":[{"id":79070,"text":"NORCE Norwegian Research Centre","active":true,"usgs":false}],"preferred":false,"id":886247,"contributorType":{"id":1,"text":"Authors"},"rank":26},{"text":"Westrelin, Samuel","contributorId":330938,"corporation":false,"usgs":false,"family":"Westrelin","given":"Samuel","email":"","affiliations":[{"id":79071,"text":"Aix Marseille Univ","active":true,"usgs":false}],"preferred":false,"id":886248,"contributorType":{"id":1,"text":"Authors"},"rank":27},{"text":"Baktoft, Henrik","contributorId":330939,"corporation":false,"usgs":false,"family":"Baktoft","given":"Henrik","email":"","affiliations":[{"id":79072,"text":"Norwegian Institute for Nature Research; Technical University of Denmark","active":true,"usgs":false}],"preferred":false,"id":886249,"contributorType":{"id":1,"text":"Authors"},"rank":28}]}}
,{"id":70248358,"text":"70248358 - 2023 - Food web changes reflected in age-0 piscivore diets and growth","interactions":[],"lastModifiedDate":"2023-09-20T16:27:34.927804","indexId":"70248358","displayToPublicDate":"2023-09-03T08:12:12","publicationYear":"2023","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1471,"text":"Ecology of Freshwater Fish","active":true,"publicationSubtype":{"id":10}},"title":"Food web changes reflected in age-0 piscivore diets and growth","docAbstract":"<p><span>Lake Erie walleye (</span><i>Stizostedion vitreum</i><span>) recruitment fluctuates annually and depends partially on their diet and growth during their first year of life. In recent decades, age-0 walleye diet and growth may be responding to food web changes in western Lake Erie. To determine how age-0 walleye have responded to changes in prey species and abundance, we compared diet between 2019, 2014 and 1994–1999. Larval walleye ate predominantly cyclopoids in 2019, compared to 1994–1999 when calanoids were the most consumed copepod. Juvenile walleye ate predominantly large cladocerans and benthic invertebrates in 2019, compared to 2014 and 1994 when fish was the most consumed prey. Additionally, in 2019 and 2014, age-0 walleye ate two of the current aquatic invasive species (AIS),&nbsp;</span><i>Bythotrephes longimanu</i><span>s and&nbsp;</span><i>Neogobius melanostomus</i><span>, and the historical AIS,&nbsp;</span><i>Osmerus mordax</i><span>. Age-0 walleye were smaller in 2019 than in 2014 and switched to consuming more AIS and less fish suggesting that more energetically favourable prey were not available. While age-0 walleye showed adaptation to new prey and conditions, they had a lower quality diet because they consumed less fish, but also because the invasive fish they now consume have a lower energy density than native species. However, lower quality diet and size may not result in reduced survival, if adequate alternative prey is available. Continued monitoring of age-0 walleye diet could provide confirmation that lower diet quality during the first year decreased walleye growth and aid to identify any effects changes in age-0 diets has on recruitment to the adult population.</span></p>","language":"English","publisher":"Wiley","doi":"10.1111/eff.12737","usgsCitation":"Yang, T., Mayer, C.M., DeBruyne, R.L., Roseman, E., Dufour, M.R., and Weimer, E.J., 2023, Food web changes reflected in age-0 piscivore diets and growth: Ecology of Freshwater Fish, v. 32, no. 4, p. 765-782, https://doi.org/10.1111/eff.12737.","productDescription":"18 p.","startPage":"765","endPage":"782","ipdsId":"IP-147542","costCenters":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"links":[{"id":442211,"rank":3,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1111/eff.12737","text":"Publisher Index Page"},{"id":435194,"rank":2,"type":{"id":30,"text":"Data Release"},"url":"https://doi.org/10.5066/P9A4NK3J","text":"USGS data release","linkHelpText":"Larval and Young of Year Walleye Diets in Western Lake Erie during 2014 and 2019"},{"id":420661,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"http://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Michigan, Ohio","otherGeospatial":"Lake Erie","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"coordinates\": [\n          [\n            [\n              -82.37499427818497,\n              41.39124560190362\n            ],\n            [\n              -82.37499427818497,\n              41.6615929606219\n            ],\n            [\n              -82.6407196438479,\n              41.66668299411526\n            ],\n            [\n              -83.02908748597028,\n              41.84458060740167\n            ],\n            [\n         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0000-0003-4868-0167","orcid":"https://orcid.org/0000-0003-4868-0167","contributorId":329591,"corporation":false,"usgs":false,"family":"Yang","given":"T.","email":"","affiliations":[{"id":36188,"text":"U.S. Fish and Wildlife Service","active":true,"usgs":false}],"preferred":false,"id":882671,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Mayer, Christine M","contributorId":195893,"corporation":false,"usgs":false,"family":"Mayer","given":"Christine","email":"","middleInitial":"M","affiliations":[],"preferred":false,"id":882672,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"DeBruyne, Robin L. 0000-0002-9232-7937 rdebruyne@usgs.gov","orcid":"https://orcid.org/0000-0002-9232-7937","contributorId":4936,"corporation":false,"usgs":true,"family":"DeBruyne","given":"Robin","email":"rdebruyne@usgs.gov","middleInitial":"L.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":882673,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Roseman, Edward F. 0000-0002-5315-9838","orcid":"https://orcid.org/0000-0002-5315-9838","contributorId":217909,"corporation":false,"usgs":true,"family":"Roseman","given":"Edward F.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":882674,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Dufour, Mark Richard 0000-0001-6930-7666","orcid":"https://orcid.org/0000-0001-6930-7666","contributorId":291450,"corporation":false,"usgs":true,"family":"Dufour","given":"Mark","email":"","middleInitial":"Richard","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":882675,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Weimer, Eric J.","contributorId":64153,"corporation":false,"usgs":true,"family":"Weimer","given":"Eric","email":"","middleInitial":"J.","affiliations":[],"preferred":false,"id":882676,"contributorType":{"id":1,"text":"Authors"},"rank":6}]}}
,{"id":70274728,"text":"70274728 - 2023 - Rangeland songbirds","interactions":[],"lastModifiedDate":"2026-04-09T15:30:00.659234","indexId":"70274728","displayToPublicDate":"2023-09-02T10:26:57","publicationYear":"2023","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"title":"Rangeland songbirds","docAbstract":"<p><span>Songbirds that occur across the diverse types of North American rangelands constitute many families within the Order Passeriformes, and hundreds of species. Most are declining, and many are considered potential indicator species for rangeland ecosystems. We synthesized information on the natural and life history, habitat requirements, conservation status, and responses to management of songbirds associated with North American grasslands and sagebrush steppe, two of the most geographically extensive types of rangelands. We provide a more targeted examination of the habitat associations and management considerations for two focal species, the grassland-obligate grasshopper sparrow (</span><i>Ammodramus savannarum</i><span>) and sagebrush-obligate Brewer’s sparrow (</span><i>Spizella breweri</i><span>). Grassland- and sagebrush-obligate species rely on expansive stands of grasslands and sagebrush, respectively, and we discuss how key ecological processes and rangeland management approaches—grazing, fire, and mechanical treatments—influence rangeland songbirds. Rangeland management practices can affect breeding songbirds considerably, primarily through the resultant structure and composition of vegetation, which influences the availability of preferred nesting substrates, refugia from predators, and foraging success. Optimal management strategies to limit negative consequences to rangeland songbirds will depend on the target species and local topoedaphic and climatic conditions. The maintenance of large, contiguous patches of native habitats and restoration of previously degraded areas will help facilitate the population persistence of rangeland-associated songbirds. Maintaining structural heterogeneity of habitats within landscapes, moreover, can facilitate local species diversity. Information pertaining to periods outside of the nesting stage is severely lacking for most species, which is concerning because effective management necessitates understanding of threats and limiting factors across the full annual life cycle. Moreover, information on disease effects and prevalence, the effects of a changing climate, and how both may interact with management strategies, also comprise key gaps in knowledge.</span></p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Rangeland wildlife ecology & conservation","largerWorkSubtype":{"id":15,"text":"Monograph"},"language":"English","publisher":"Springer","doi":"10.1007/978-3-031-34037-6_12","usgsCitation":"Chalfoun, A.D., Johnson, T.N., and Shaffer, J., 2023, Rangeland songbirds, chap. <i>of</i> Rangeland wildlife ecology & conservation, p. 379-415, https://doi.org/10.1007/978-3-031-34037-6_12.","productDescription":"37 p,","startPage":"379","endPage":"415","ipdsId":"IP-132473","costCenters":[{"id":200,"text":"Coop Res Unit Seattle","active":true,"usgs":true}],"links":[{"id":502357,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"noUsgsAuthors":false,"publicationDate":"2023-09-02","publicationStatus":"PW","contributors":{"authors":[{"text":"Chalfoun, Anna D. 0000-0002-0219-6006 achalfoun@usgs.gov","orcid":"https://orcid.org/0000-0002-0219-6006","contributorId":197589,"corporation":false,"usgs":true,"family":"Chalfoun","given":"Anna","email":"achalfoun@usgs.gov","middleInitial":"D.","affiliations":[{"id":291,"text":"Fort Collins Science Center","active":true,"usgs":true},{"id":200,"text":"Coop Res Unit Seattle","active":true,"usgs":true}],"preferred":true,"id":958872,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Johnson, Tracey N. 0000-0003-3480-8596","orcid":"https://orcid.org/0000-0003-3480-8596","contributorId":223735,"corporation":false,"usgs":false,"family":"Johnson","given":"Tracey","email":"","middleInitial":"N.","affiliations":[{"id":40761,"text":"Department of Fish and Wildlife Sciences, University of Idaho, Moscow, ID 83844","active":true,"usgs":false}],"preferred":false,"id":958873,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Shaffer, Jill 0000-0003-3172-0708","orcid":"https://orcid.org/0000-0003-3172-0708","contributorId":219229,"corporation":false,"usgs":true,"family":"Shaffer","given":"Jill","affiliations":[{"id":480,"text":"Northern Prairie Wildlife Research Center","active":true,"usgs":true}],"preferred":true,"id":958874,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70256626,"text":"70256626 - 2023 - Mesocarnivores of western rangelands","interactions":[],"lastModifiedDate":"2024-09-09T15:14:26.2335","indexId":"70256626","displayToPublicDate":"2023-09-02T10:06:37","publicationYear":"2023","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"chapter":"16","title":"Mesocarnivores of western rangelands","docAbstract":"<p>There are 22 species of mesocarnivores (carnivores weighing &lt; 15 kg) belonging to five families that live in rangelands of the western United States. Mesocarnivores are understudied relative to large carnivores but can have significant impacts on ecosystems and human dimensions. In this chapter, we review the current state of knowledge about the biology, ecology, and human interactions of the mesocarnivores that occupy the rangelands of the central and western United States. In these two regions, mesocarnivores may serve as the apex predator in areas where large carnivores no longer occur, and can have profound impacts on endemic prey, disease ecology, and livestock production. Some mesocarnivore species are valued because they are harvested for food and fur, while others are considered nuisance species because they can have negative impacts on ranching. Many mesocarnivores have flexible life history strategies that make them well-suited for future population growth or range expansion as western landscapes change due to rapid human population growth, landscape development, and alterations to ecosystems from climate change; however other mesocarnivores continue to decline. More research on this important guild is needed to understand their role in western working landscapes.</p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Rangeland wildlife ecology and conservation","largerWorkSubtype":{"id":15,"text":"Monograph"},"language":"English","publisher":"Springer","doi":"10.1007/978-3-031-34037-6_16","usgsCitation":"Young, J., Butler, A.R., Holbrook, J.D., Shamon, H., and Boal, C.W., 2023, Mesocarnivores of western rangelands, chap. 16 <i>of</i> Rangeland wildlife ecology and conservation, p. 549-590, https://doi.org/10.1007/978-3-031-34037-6_16.","productDescription":"42 p.","startPage":"549","endPage":"590","ipdsId":"IP-144182","costCenters":[{"id":198,"text":"Coop Res Unit Atlanta","active":true,"usgs":true}],"links":[{"id":442215,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1007/978-3-031-34037-6_16","text":"Publisher Index 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,{"id":70256495,"text":"70256495 - 2023 - Waterfowl and wetland birds","interactions":[],"lastModifiedDate":"2024-08-14T15:15:10.679859","indexId":"70256495","displayToPublicDate":"2023-09-02T09:37:05","publicationYear":"2023","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"chapter":"13","title":"Waterfowl and wetland birds","docAbstract":"<p><span>The future of wetland bird habitat and populations is intrinsically connected with the conservation of rangelands in North America. Many rangeland watersheds are source drainage for some of the highest functioning extant wetlands. The Central and Pacific Flyways have significant overlap with available rangelands in western North America. Within these flyways, the importance of rangeland management has become increasingly recognized by those involved in wetland bird conservation. Within the array of wetland bird species, seasonal habitat needs are highly variable. During the breeding period, nest survival is one of the most important drivers of population growth for many wetland bird species and rangelands often provide quality nesting cover. Throughout spring and fall, rangeland wetlands provide key forage resources that support energetic demands needed for migration. In some areas, stock ponds developed for livestock water provide migration stopover and wintering habitat, especially in times of water scarcity. In the Intermountain West, drought combined with water demands from agriculture and human population growth are likely headed to an ecological tipping point for wetland birds and their habitat in the region. In the Prairie Pothole Region, conversion of rangeland and draining of wetlands for increased crop production remains a significant conservation issue for wetland birds and other wildlife. In landscapes dominated by agricultural production, rangelands provide some of the highest value ecosystem services, including water quality and wetland function. Recent research has shown livestock grazing, if managed properly, is compatible and at times beneficial to wetland bird habitat needs. Either directly, or indirectly, wetland bird populations and their habitat needs are supported by healthy rangelands. In the future, rangeland and wetland bird managers will benefit from increased collaboration to aid in meeting ultimate conservation objectives.</span></p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Rangeland wildlife ecology and conservation","largerWorkSubtype":{"id":15,"text":"Monograph"},"language":"English","publisher":"Springer","doi":"10.1007/978-3-031-34037-6_13","usgsCitation":"Vest, J.L., Haukos, D.A., Niemuth, N.D., Setash, C.M., Gammonley, J.H., Devries, J.H., and Dahlgren, D., 2023, Waterfowl and wetland birds, chap. 13 <i>of</i> Rangeland wildlife ecology and conservation, p. 417-469, https://doi.org/10.1007/978-3-031-34037-6_13.","productDescription":"53 p.","startPage":"417","endPage":"469","ipdsId":"IP-155680","costCenters":[{"id":198,"text":"Coop Res Unit Atlanta","active":true,"usgs":true}],"links":[{"id":442218,"rank":2,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1007/978-3-031-34037-6_13","text":"Publisher Index Page"},{"id":432654,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"noUsgsAuthors":false,"publicationDate":"2023-09-02","publicationStatus":"PW","contributors":{"editors":[{"text":"McNew, Lance B. lmcnew@usgs.gov","contributorId":5086,"corporation":false,"usgs":true,"family":"McNew","given":"Lance","email":"lmcnew@usgs.gov","middleInitial":"B.","affiliations":[{"id":114,"text":"Alaska Science Center","active":true,"usgs":true}],"preferred":true,"id":909849,"contributorType":{"id":2,"text":"Editors"},"rank":1},{"text":"Dahlgren, David K.","contributorId":257565,"corporation":false,"usgs":false,"family":"Dahlgren","given":"David","email":"","middleInitial":"K.","affiliations":[{"id":52056,"text":"Department of Wildland Resources, Jack H. Berryman Institute, S. J. Quinney College of Natural Resources, Utah State University, Logan, UT, USA","active":true,"usgs":false}],"preferred":false,"id":909850,"contributorType":{"id":2,"text":"Editors"},"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":909851,"contributorType":{"id":2,"text":"Editors"},"rank":3}],"authors":[{"text":"Vest, Josh L. 0000-0001-9664-4502","orcid":"https://orcid.org/0000-0001-9664-4502","contributorId":333578,"corporation":false,"usgs":false,"family":"Vest","given":"Josh","email":"","middleInitial":"L.","affiliations":[{"id":79939,"text":"USFWS PPJV","active":true,"usgs":false}],"preferred":false,"id":907656,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Haukos, David A. 0000-0001-5372-9960 dhaukos@usgs.gov","orcid":"https://orcid.org/0000-0001-5372-9960","contributorId":3664,"corporation":false,"usgs":true,"family":"Haukos","given":"David","email":"dhaukos@usgs.gov","middleInitial":"A.","affiliations":[{"id":198,"text":"Coop Res Unit Atlanta","active":true,"usgs":true},{"id":200,"text":"Coop Res Unit Seattle","active":true,"usgs":true}],"preferred":true,"id":907657,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Niemuth, Neal D. 0009-0006-9637-5588","orcid":"https://orcid.org/0009-0006-9637-5588","contributorId":204334,"corporation":false,"usgs":false,"family":"Niemuth","given":"Neal","email":"","middleInitial":"D.","affiliations":[{"id":36919,"text":"U.S. Fish and Wildlife Service Habitat and Population Evaluation Team","active":true,"usgs":false}],"preferred":false,"id":907658,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Setash, Casey M.","contributorId":265282,"corporation":false,"usgs":false,"family":"Setash","given":"Casey","email":"","middleInitial":"M.","affiliations":[{"id":13606,"text":"CSU","active":true,"usgs":false}],"preferred":false,"id":907659,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Gammonley, James H.","contributorId":272965,"corporation":false,"usgs":false,"family":"Gammonley","given":"James","email":"","middleInitial":"H.","affiliations":[{"id":40103,"text":"cdpw","active":true,"usgs":false}],"preferred":false,"id":907660,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Devries, James H.","contributorId":268336,"corporation":false,"usgs":false,"family":"Devries","given":"James","email":"","middleInitial":"H.","affiliations":[{"id":7182,"text":"Ducks Unlimited Canada","active":true,"usgs":false}],"preferred":true,"id":907661,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Dahlgren, David K.","contributorId":340904,"corporation":false,"usgs":false,"family":"Dahlgren","given":"David K.","affiliations":[{"id":6682,"text":"Utah State University","active":true,"usgs":false}],"preferred":false,"id":907662,"contributorType":{"id":1,"text":"Authors"},"rank":7}]}}
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