{"pageNumber":"1052","pageRowStart":"26275","pageSize":"25","recordCount":165485,"records":[{"id":70175015,"text":"70175015 - 2016 - Benefits of prescribed flows for salmon smolt survival enhancement vary longitudinally in a highly managed river system","interactions":[],"lastModifiedDate":"2016-12-09T16:28:03","indexId":"70175015","displayToPublicDate":"2016-07-15T14:30:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3301,"text":"River Research and Applications","active":true,"publicationSubtype":{"id":10}},"title":"Benefits of prescribed flows for salmon smolt survival enhancement vary longitudinally in a highly managed river system","docAbstract":"<p><span>The influence of streamflow on survival of emigrating juvenile Pacific salmonids&nbsp;</span><i>Oncorhynchus</i><span>&nbsp;spp. (smolts) is a major concern for water managers throughout the northeast Pacific Rim. However, few studies have quantified flow effects on smolt survival, and available information does not indicate a consistent flow&ndash;survival relationship within the typical range of flows under management control. In the Yakima Basin, Washington, the potential effects of streamflow alterations on smolt survival have been debated for over 20&thinsp;years. Using a series of controlled flow releases from upper basin reservoirs and radiotelemetry, we quantified the relationship between flow and yearling Chinook salmon smolt survival in the 208&thinsp;km reach between Roza Dam and the Yakima River mouth. A multistate mark&ndash;recapture model accounted for weekly variation in flow conditions experienced by tagged fish in four discrete river segments. Smolt survival was significantly associated with streamflow in the Roza Reach [river kilometre (rkm) 208&ndash;189] and marginally associated with streamflow in the Sunnyside Reach (rkm 169&ndash;77). However, smolt survival was not significantly associated with flow in the Naches and Prosser Reaches (rkm 189&ndash;169 and rkm 77&ndash;3). This discrepancy indicates potential differences in underlying flow-related survival mechanisms, such as predation or passage impediments. Our results clarify trade-offs between flow augmentation for fisheries enhancement and other beneficial uses, and our study design provides a framework for resolving uncertainties about streamflow effects on migratory fish survival in other river systems.&nbsp;</span></p>","language":"English","publisher":"John Wiley & Sons, Ltd.","doi":"10.1002/rra.3066","usgsCitation":"Courter, I., Garrison, T., Kock, T.J., Perry, R.W., Child, D., and Hubble, J., 2016, Benefits of prescribed flows for salmon smolt survival enhancement vary longitudinally in a highly managed river system: River Research and Applications, v. 32, no. 10, p. 1999-2008, https://doi.org/10.1002/rra.3066.","productDescription":"10 p.","startPage":"1999","endPage":"2008","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-076303","costCenters":[{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true}],"links":[{"id":325688,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Washington","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -120.91552734375,\n              46.057985244793024\n            ],\n            [\n              -120.91552734375,\n              47.234489635299184\n            ],\n            [\n              -117.71850585937501,\n              47.234489635299184\n            ],\n            [\n              -117.71850585937501,\n              46.057985244793024\n            ],\n            [\n              -120.91552734375,\n              46.057985244793024\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"32","issue":"10","publishingServiceCenter":{"id":12,"text":"Tacoma PSC"},"noUsgsAuthors":false,"publicationDate":"2016-07-15","publicationStatus":"PW","scienceBaseUri":"5799db36e4b0589fa1c7e6ce","contributors":{"authors":[{"text":"Courter, Ian","contributorId":173188,"corporation":false,"usgs":false,"family":"Courter","given":"Ian","affiliations":[{"id":27180,"text":"Mount Hood Environmental","active":true,"usgs":false}],"preferred":false,"id":643605,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Garrison, Thomas","contributorId":173189,"corporation":false,"usgs":false,"family":"Garrison","given":"Thomas","affiliations":[{"id":27181,"text":"Fish Passage Center","active":true,"usgs":false}],"preferred":false,"id":643606,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Kock, Tobias J. 0000-0001-8976-0230 tkock@usgs.gov","orcid":"https://orcid.org/0000-0001-8976-0230","contributorId":3038,"corporation":false,"usgs":true,"family":"Kock","given":"Tobias","email":"tkock@usgs.gov","middleInitial":"J.","affiliations":[{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true}],"preferred":true,"id":643604,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Perry, Russell W. 0000-0003-4110-8619 rperry@usgs.gov","orcid":"https://orcid.org/0000-0003-4110-8619","contributorId":2820,"corporation":false,"usgs":true,"family":"Perry","given":"Russell","email":"rperry@usgs.gov","middleInitial":"W.","affiliations":[{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true}],"preferred":true,"id":643607,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Child, David","contributorId":173190,"corporation":false,"usgs":false,"family":"Child","given":"David","affiliations":[{"id":27182,"text":"D.C. Consulting LLC","active":true,"usgs":false}],"preferred":false,"id":643608,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Hubble, Joel","contributorId":173191,"corporation":false,"usgs":false,"family":"Hubble","given":"Joel","affiliations":[{"id":27183,"text":"U.S. Bureau of Reclamation, Yakima Field Office","active":true,"usgs":false}],"preferred":false,"id":643609,"contributorType":{"id":1,"text":"Authors"},"rank":6}]}}
,{"id":70175021,"text":"70175021 - 2016 - Dam operations affect route-specific passage and survival of juvenile Chinook salmon at a main-stem diversion dam","interactions":[],"lastModifiedDate":"2016-12-09T16:28:43","indexId":"70175021","displayToPublicDate":"2016-07-15T14:30:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3301,"text":"River Research and Applications","active":true,"publicationSubtype":{"id":10}},"title":"Dam operations affect route-specific passage and survival of juvenile Chinook salmon at a main-stem diversion dam","docAbstract":"<p>Diversion dams can negatively affect emigrating juvenile salmon populations because fish must pass through the impounded river created by the dam, negotiate a passage route at the dam and then emigrate through a riverine reach that has been affected by reduced river discharge. To quantify the effects of a main-stem diversion dam on juvenile Chinook salmon in the Yakima River, Washington, USA, we used radio telemetry to understand how dam operations and river discharge in the 18-km reach downstream of the dam affected route-specific passage and survival. We found evidence of direct mortality associated with dam passage and indirect mortality associated with migration through the reach below the dam. Survival of fish passing over a surface spill gate (the west gate) was positively related to river discharge, and survival was similar for fish released below the dam, suggesting that passage via this route caused little additional mortality. However, survival of fish that passed under a sub-surface spill gate (the east gate) was considerably lower than survival of fish released downstream of the dam, with the difference in survival decreasing as river discharge increased. The probability of fish passing the dam via three available routes was strongly influenced by dam operations, with passage through the juvenile fish bypass and the east gate increasing with discharge through those routes. By simulating daily passage and route-specific survival, we show that variation in total survival is driven by river discharge and moderated by the proportion of fish passing through low-survival or high-survival passage routes.</p>","language":"English","publisher":"John Wiley & Sons, Ltd.","doi":"10.1002/rra.3059","usgsCitation":"Perry, R.W., Kock, T.J., Couter, I.I., Garrison, T.M., Hubble, J.D., and Child, D.B., 2016, Dam operations affect route-specific passage and survival of juvenile Chinook salmon at a main-stem diversion dam: River Research and Applications, v. 32, no. 10, p. 2009-2019, https://doi.org/10.1002/rra.3059.","productDescription":"11 p.","startPage":"2009","endPage":"2019","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-075478","costCenters":[{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true}],"links":[{"id":325685,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Washington","otherGeospatial":"Roza Dam","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -120.47658920288085,\n              46.71350244599995\n            ],\n            [\n              -120.47658920288085,\n              46.768910240322285\n            ],\n            [\n              -120.43624877929688,\n              46.768910240322285\n            ],\n            [\n              -120.43624877929688,\n              46.71350244599995\n            ],\n            [\n              -120.47658920288085,\n              46.71350244599995\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"32","issue":"10","publishingServiceCenter":{"id":12,"text":"Tacoma PSC"},"noUsgsAuthors":false,"publicationDate":"2016-07-15","publicationStatus":"PW","scienceBaseUri":"5799db43e4b0589fa1c7e7d6","contributors":{"authors":[{"text":"Perry, Russell W. 0000-0003-4110-8619 rperry@usgs.gov","orcid":"https://orcid.org/0000-0003-4110-8619","contributorId":2820,"corporation":false,"usgs":true,"family":"Perry","given":"Russell","email":"rperry@usgs.gov","middleInitial":"W.","affiliations":[{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true}],"preferred":true,"id":643619,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Kock, Tobias J. 0000-0001-8976-0230 tkock@usgs.gov","orcid":"https://orcid.org/0000-0001-8976-0230","contributorId":3038,"corporation":false,"usgs":true,"family":"Kock","given":"Tobias","email":"tkock@usgs.gov","middleInitial":"J.","affiliations":[{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true}],"preferred":true,"id":643620,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Couter, Ian I","contributorId":173194,"corporation":false,"usgs":false,"family":"Couter","given":"Ian","email":"","middleInitial":"I","affiliations":[{"id":27185,"text":"Cramer Fish Sciences, 600 NW Fariss Road, Gresham, OR 97030","active":true,"usgs":false}],"preferred":false,"id":643621,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Garrison, Thomas M","contributorId":173195,"corporation":false,"usgs":false,"family":"Garrison","given":"Thomas","email":"","middleInitial":"M","affiliations":[{"id":27185,"text":"Cramer Fish Sciences, 600 NW Fariss Road, Gresham, OR 97030","active":true,"usgs":false}],"preferred":false,"id":643622,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Hubble, Joel D","contributorId":173196,"corporation":false,"usgs":false,"family":"Hubble","given":"Joel","email":"","middleInitial":"D","affiliations":[{"id":27186,"text":"U.S. Bureau of Reclamation, 1910 Marsh Road, Yakima, WA  98901","active":true,"usgs":false}],"preferred":false,"id":643623,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Child, David B","contributorId":173197,"corporation":false,"usgs":false,"family":"Child","given":"David","email":"","middleInitial":"B","affiliations":[{"id":27187,"text":"D.C. Consulting LLC, 2807 W. Washington Ave., Yakima, WA 98903","active":true,"usgs":false}],"preferred":false,"id":643624,"contributorType":{"id":1,"text":"Authors"},"rank":6}]}}
,{"id":70174894,"text":"70174894 - 2016 - Rediscovery of the 220-year-old holotype of the Banded Iguana, <i>Brachylophus fasciatus</i> (Brongniart, 1800) in the Paris Natural History Museum","interactions":[],"lastModifiedDate":"2016-07-20T11:00:04","indexId":"70174894","displayToPublicDate":"2016-07-15T14:30:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3814,"text":"Zootaxa","onlineIssn":"1175-5334","printIssn":"1175-5326","active":true,"publicationSubtype":{"id":10}},"title":"Rediscovery of the 220-year-old holotype of the Banded Iguana, <i>Brachylophus fasciatus</i> (Brongniart, 1800) in the Paris Natural History Museum","docAbstract":"<p>The Paris Natural History Museum herpetological collection (MNHN-RA) has seven historical specimens of <i>Brachylophus</i> spp. collected late in the 18th and early in the 19th centuries.<i> Brachylophus fasciatus</i> was described in 1800 by Brongniart but its type was subsequently considered as lost and never present in MNHN-RA collections. We found that 220 year old holotype among existing collections, registered without any data, and we show that it was donated to MNHN-RA from Brongniart&rsquo;s private collection after his death in 1847. It was registered in the catalogue of 1851 but without any data or reference to its type status. According to the coloration (uncommon midbody saddle-like dorsal banding pattern) and morphometric data given in its original description and in the subsequent examination of the type in 1802 by Daudin and in 1805 by Brongniart we found that lost holotype in the collections. Another MNHN-RA specimen has Horn Islands (Wallis and Futuna) as the collection location but we show that most of the collections given to MNHN-RA by its collector, Louis Arnoux, have mixed localities in the MNHN-RA catalogues. We thus conclude that the locality is wrong and that the species never inhabited those islands located west of Western Samoa and north-east of Fiji.</p>","language":"English","publisher":"Magnolia Press","doi":"10.11646/zootaxa.4138.2.10","usgsCitation":"Ineich, I., and Fisher, R.N., 2016, Rediscovery of the 220-year-old holotype of the Banded Iguana, <i>Brachylophus fasciatus</i> (Brongniart, 1800) in the Paris Natural History Museum: Zootaxa, v. 4138, no. 2, p. 381-391, https://doi.org/10.11646/zootaxa.4138.2.10.","productDescription":"10 p.","startPage":"381","endPage":"391","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-077035","costCenters":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"links":[{"id":470747,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.11646/zootaxa.4138.2.10","text":"Publisher Index Page"},{"id":325466,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"4138","issue":"2","publishingServiceCenter":{"id":1,"text":"Sacramento PSC"},"noUsgsAuthors":false,"publicationDate":"2016-07-15","publicationStatus":"PW","scienceBaseUri":"5790a18ce4b030378fb47454","contributors":{"authors":[{"text":"Ineich, Ivan","contributorId":100760,"corporation":false,"usgs":true,"family":"Ineich","given":"Ivan","email":"","affiliations":[],"preferred":false,"id":643026,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Fisher, Robert N. 0000-0002-2956-3240 rfisher@usgs.gov","orcid":"https://orcid.org/0000-0002-2956-3240","contributorId":1529,"corporation":false,"usgs":true,"family":"Fisher","given":"Robert","email":"rfisher@usgs.gov","middleInitial":"N.","affiliations":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"preferred":true,"id":643025,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70173982,"text":"70173982 - 2016 - Global trends in satellite-based emergency mapping","interactions":[],"lastModifiedDate":"2017-01-17T19:15:11","indexId":"70173982","displayToPublicDate":"2016-07-15T13:45:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3338,"text":"Science","active":true,"publicationSubtype":{"id":10}},"title":"Global trends in satellite-based emergency mapping","docAbstract":"<p><span>Over the past 15 years, scientists and disaster responders have increasingly used satellite-based Earth observations for global rapid assessment of disaster situations. We review global trends in satellite rapid response and emergency mapping from 2000 to 2014, analyzing more than 1000 incidents in which satellite monitoring was used for assessing major disaster situations. We provide a synthesis of spatial patterns and temporal trends in global satellite emergency mapping efforts and show that satellite-based emergency mapping is most intensively deployed in Asia and Europe and follows well the geographic, physical, and temporal distributions of global natural disasters. We present an outlook on the future use of Earth observation technology for disaster response and mitigation by putting past and current developments into context and perspective.</span></p>","language":"English","publisher":"American Association for the Advancement of Science","publisherLocation":"New York, NY","doi":"10.1126/science.aad8728","usgsCitation":"Voigt, S., Giulio-Tonolo, F., Lyons, J., Kucera, J., Jones, B., Schneiderhan, T., Platzeck, G., Kaku, K., Hazarika, M.K., Czaran, L., Li, S., Pedersen, W., James, G.K., Proy, C., Muthike, D.M., Bequignon, J., and Guha-Sapir, D., 2016, Global trends in satellite-based emergency mapping: Science, v. 353, no. 6296, p. 247-252, https://doi.org/10.1126/science.aad8728.","startPage":"247","endPage":"252","numberOfPages":"6","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-073880","costCenters":[{"id":222,"text":"Earth Resources Observation and Science (EROS) Center","active":true,"usgs":true}],"links":[{"id":502568,"rank":0,"type":{"id":41,"text":"Open Access External Repository Page"},"url":"http://id.nii.ac.jp/1696/00022756/","text":"External Repository"},{"id":325920,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"353","issue":"6296","publishingServiceCenter":{"id":4,"text":"Rolla PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","scienceBaseUri":"57a1c42fe4b006cb45552c18","contributors":{"authors":[{"text":"Voigt, Stefan","contributorId":172230,"corporation":false,"usgs":false,"family":"Voigt","given":"Stefan","email":"","affiliations":[{"id":27001,"text":"German Aerospace Center, Germany","active":true,"usgs":false}],"preferred":false,"id":639978,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Giulio-Tonolo, Fabio","contributorId":172231,"corporation":false,"usgs":false,"family":"Giulio-Tonolo","given":"Fabio","email":"","affiliations":[{"id":27002,"text":"Information Technology for Humanitarian Assistance, Cooperation and Action, Italy","active":true,"usgs":false}],"preferred":false,"id":639979,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Lyons, Josh","contributorId":172232,"corporation":false,"usgs":false,"family":"Lyons","given":"Josh","email":"","affiliations":[{"id":27003,"text":"Human Rights Watch, Switzerland","active":true,"usgs":false}],"preferred":false,"id":639980,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Kucera, Jan","contributorId":172233,"corporation":false,"usgs":false,"family":"Kucera","given":"Jan","email":"","affiliations":[{"id":27004,"text":"European Commission - Joint Research Centre, Italy","active":true,"usgs":false}],"preferred":false,"id":639981,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Jones, Brenda 0000-0003-4941-5349 bkjones@usgs.gov","orcid":"https://orcid.org/0000-0003-4941-5349","contributorId":2994,"corporation":false,"usgs":true,"family":"Jones","given":"Brenda","email":"bkjones@usgs.gov","affiliations":[{"id":423,"text":"National Geospatial Program","active":true,"usgs":true},{"id":223,"text":"Earth Resources Observation and Science (EROS) Center (Geography)","active":false,"usgs":true}],"preferred":true,"id":639977,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Schneiderhan, Tobias","contributorId":172234,"corporation":false,"usgs":false,"family":"Schneiderhan","given":"Tobias","email":"","affiliations":[{"id":27001,"text":"German Aerospace Center, Germany","active":true,"usgs":false}],"preferred":false,"id":639982,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Platzeck, Gabriel","contributorId":141172,"corporation":false,"usgs":false,"family":"Platzeck","given":"Gabriel","email":"","affiliations":[{"id":13704,"text":"Comision Nacional De Actividades Espaciales","active":true,"usgs":false}],"preferred":false,"id":639983,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Kaku, Kazuya","contributorId":172235,"corporation":false,"usgs":false,"family":"Kaku","given":"Kazuya","email":"","affiliations":[{"id":27005,"text":"Japan Aerospace Exploration Agency, Japan","active":true,"usgs":false}],"preferred":false,"id":639984,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Hazarika, Manzul Kumar","contributorId":172236,"corporation":false,"usgs":false,"family":"Hazarika","given":"Manzul","email":"","middleInitial":"Kumar","affiliations":[{"id":27006,"text":"Asian Institute of Technology, Thailand","active":true,"usgs":false}],"preferred":false,"id":639985,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Czaran, Lorant","contributorId":172237,"corporation":false,"usgs":false,"family":"Czaran","given":"Lorant","email":"","affiliations":[{"id":27007,"text":"UN Office for Outer Space Affairs, Austria","active":true,"usgs":false}],"preferred":false,"id":639986,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Li, Suju","contributorId":172238,"corporation":false,"usgs":false,"family":"Li","given":"Suju","email":"","affiliations":[{"id":27008,"text":"National Disaster Reduction Center of China","active":true,"usgs":false}],"preferred":false,"id":639987,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Pedersen, Wendi","contributorId":172239,"corporation":false,"usgs":false,"family":"Pedersen","given":"Wendi","email":"","affiliations":[{"id":27009,"text":"Geneva International Centre for Humanitarian Demining, Switzerland","active":true,"usgs":false}],"preferred":false,"id":639988,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"James, Godstime Kadiri","contributorId":172240,"corporation":false,"usgs":false,"family":"James","given":"Godstime","email":"","middleInitial":"Kadiri","affiliations":[{"id":27010,"text":"National Space Research and Development Agency, Nigeria","active":true,"usgs":false}],"preferred":false,"id":639989,"contributorType":{"id":1,"text":"Authors"},"rank":13},{"text":"Proy, Catherine","contributorId":172241,"corporation":false,"usgs":false,"family":"Proy","given":"Catherine","email":"","affiliations":[{"id":27011,"text":"Centre National d'Études Spatiales, France","active":true,"usgs":false}],"preferred":false,"id":639990,"contributorType":{"id":1,"text":"Authors"},"rank":14},{"text":"Muthike, Denis Macharia","contributorId":172242,"corporation":false,"usgs":false,"family":"Muthike","given":"Denis","email":"","middleInitial":"Macharia","affiliations":[{"id":27012,"text":"Regional Centre for Mapping of Resources for Development, Kenya","active":true,"usgs":false}],"preferred":false,"id":639991,"contributorType":{"id":1,"text":"Authors"},"rank":15},{"text":"Bequignon, Jerome","contributorId":172243,"corporation":false,"usgs":false,"family":"Bequignon","given":"Jerome","email":"","affiliations":[{"id":27013,"text":"European Space Agency, Belgium","active":true,"usgs":false}],"preferred":false,"id":639992,"contributorType":{"id":1,"text":"Authors"},"rank":16},{"text":"Guha-Sapir, Debarati","contributorId":172244,"corporation":false,"usgs":false,"family":"Guha-Sapir","given":"Debarati","email":"","affiliations":[{"id":27014,"text":"Université catholoque de Louvain, Belgium","active":true,"usgs":false}],"preferred":false,"id":639993,"contributorType":{"id":1,"text":"Authors"},"rank":17}]}}
,{"id":70173916,"text":"ofr20161097 - 2016 - Input-form data for the U.S. Geological Survey assessment of the Mississippian Barnett Shale of the Bend Arch-Fort Worth Basin Province, 2015","interactions":[],"lastModifiedDate":"2021-08-24T15:30:17.510821","indexId":"ofr20161097","displayToPublicDate":"2016-07-15T11:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":5,"text":"USGS Numbered Series"},"seriesTitle":{"id":330,"text":"Open-File Report","code":"OFR","onlineIssn":"2331-1258","printIssn":"0196-1497","active":true,"publicationSubtype":{"id":5}},"seriesNumber":"2016-1097","title":"Input-form data for the U.S. Geological Survey assessment of the Mississippian Barnett Shale of the Bend Arch-Fort Worth Basin Province, 2015","docAbstract":"<p>In 2015, the U.S. Geological Survey (USGS) released an updated assessment of undiscovered, technically recoverable shale gas and shale oil resources of the Mississippian Barnett Shale in north-central Texas (Marra and others, 2015). The Barnett Shale was assessed using the standard continuous (unconventional) methodology established by the USGS for two assessment units (AUs): (1) Barnett Continuous Gas AU, and (2) Barnett Mixed Continuous Gas and Oil AU. A third assessment unit, the Western Barnett Continuous Oil AU, was also defined but was not quantitatively assessed because of limited data within the extent of the AU. The purpose of this report is to provide supplemental documentation of the quantitative input parameters applied in the Barnett Shale assessment.</p>","language":"English","publisher":"U.S. Geological Survey","publisherLocation":"Reston VA","doi":"10.3133/ofr20161097","usgsCitation":"Marra, K.R., Charpentier, R.R., Schenk, C.J., Lewan, M.D., Leathers-Miller, H.M., Klett, T.R., Gaswirth, S.B., Le, P.A., Mercier, T.J., Pitman, J.K., and Tennyson, M.E., 2016, Input-form data for the U.S. Geological Survey assessment of the Mississippian Barnett Shale of the Bend Arch–Fort Worth Basin Province, 2015: U.S. Geological Survey Open-File Report 2016-1097, 31 p., https://dx.doi.org/10.3133/ofr20161097.","productDescription":"iii, 34 p.","startPage":"1","endPage":"31","numberOfPages":"34","onlineOnly":"Y","additionalOnlineFiles":"N","ipdsId":"IP-073625","costCenters":[{"id":164,"text":"Central Energy Resources Science 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,{"id":70171285,"text":"sir20165071 - 2016 - Spatial and temporal assessment of back-barrier erosion on Cumberland Island National Seashore, Georgia, 2011–2013","interactions":[],"lastModifiedDate":"2017-01-18T13:28:18","indexId":"sir20165071","displayToPublicDate":"2016-07-15T11:00:00","publicationYear":"2016","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":"2016-5071","title":"Spatial and temporal assessment of back-barrier erosion on Cumberland Island National Seashore, Georgia, 2011–2013","docAbstract":"<p>Much research has been conducted to better understand erosion and accretion processes for the seaward zones of coastal barrier islands; however, at Cumberland Island National Seashore, Georgia, the greater management concern is the effect that erosion is having on the resources of the island’s western shoreline, or the back barrier. Catastrophic slumping and regular rates of erosion greater than 1 meter per year threaten important habitat, historical and pre-historical resources, and modern infrastructure on the island. Prior research has helped National Park Service (NPS) staff identify the most severe and vulnerable areas, but in order to develop effective management actions, information is needed on what forces and conditions cause erosion. To this end, the U.S. Geological Survey, in cooperation with the NPS, conducted two longitudinal surveys, one each at the beginning and end of the approximately year-long monitoring period from late 2011 to early 2013, along five selected segments of the back barrier of the Cumberland Island National Seashore. Monitoring stations were constructed at four of these locations that had previously been identified as erosional hotspots. The magnitude of erosion at each location was quantified to determine the relative influence of causative agents. Results indicate that erosion is, in general, highly variable within and among these segments of the Cumberland Island National Seashore’s back barrier. Observed erosion ranged from a maximum of 2.5 meters of bluff-line retreat to some areas that exhibited no net erosion over the 1-year study period. In terms of timing of erosion, three of the four sites were primarily affected by punctuated erosional events that were coincident with above-average high tides and elevated wind speeds. The fourth site exhibited steady, low-magnitude retreat throughout the study period. While it is difficult to precisely subscribe certain amounts of erosion to specific agents, this study provides insight into the mode of erosion among sites and the interaction among factors that set up conditions that may be leading to punctuated events.</p><p>Estimates of sea-level rise were incorporated into the results of this study to project conditions that could be in place by the end of the 21st century. When using the erosion rates observed in this study to extrapolate future shoreline position, results indicate an average retreat (across all monitored locations) of 15 meters by 2050 and approximately 37 meters by 2100.</p>","language":"English","publisher":"U.S. Geological Survey","publisherLocation":"Reston, VA","doi":"10.3133/sir20165071","collaboration":"Prepared in cooperation with the National Park Service","usgsCitation":"Calhoun, D.L., and Riley, J.W., 2016, Spatial and temporal assessment of back-barrier erosion on Cumberland Island National Seashore, Georgia, 2011–2013: U.S. Geological Survey Scientific Investigations Report 2016–5071, 32 p., https://dx.doi.org/10.3133/sir20165071. ","productDescription":"Report: vii, 44 p. Data Release","startPage":"1","endPage":"32","numberOfPages":"44","onlineOnly":"Y","additionalOnlineFiles":"Y","ipdsId":"IP-068286","costCenters":[{"id":13634,"text":"South Atlantic Water Science Center","active":true,"usgs":true}],"links":[{"id":438585,"rank":4,"type":{"id":30,"text":"Data Release"},"url":"https://doi.org/10.5066/F7Z60M4M","text":"USGS data release","linkHelpText":"Geospatial, continuous, and point measure data for a spatial and temporal assessment of back-barrier erosion on Cumberland Island National Seashore, Georgia, 2011-2013:"},{"id":325288,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/sir/2016/5071/coverthb.jpg"},{"id":325289,"rank":2,"type":{"id":11,"text":"Document"},"url":"https://pubs.usgs.gov/sir/2016/5071/sir20165071.pdf","text":"Report","size":"3.55 MB","linkFileType":{"id":1,"text":"pdf"},"description":"SIR 2016-5071"},{"id":325290,"rank":3,"type":{"id":30,"text":"Data Release"},"url":"https://dx.doi.org/10.5066/F7Z60M4M","text":"USGS data release - Geospatial, continuous, and point measure data for a spatial and temporal assessment of back-barrier erosion on Cumberland Island National Seashore, Georgia, 2011–2013"}],"country":"United States","state":"Georgia","otherGeospatial":"Cumberland Island National Seashore","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -81.41555786132812,\n              30.981729962028048\n            ],\n            [\n              -81.40045166015625,\n              30.97289931126414\n            ],\n            [\n              -81.39701843261719,\n              30.958179744546715\n            ],\n            [\n              -81.39770507812499,\n              30.90575967622237\n            ],\n            [\n              -81.41487121582031,\n              30.85625820510563\n            ],\n            [\n              -81.44233703613281,\n              30.80201297632633\n            ],\n            [\n              -81.44233703613281,\n              30.711142637210045\n            ],\n            [\n              -81.46430969238281,\n              30.707600499097804\n            ],\n            [\n              -81.48490905761719,\n              30.727670895047673\n            ],\n            [\n              -81.48628234863281,\n              30.745966732317395\n            ],\n            [\n              -81.47701263427734,\n              30.778713503375876\n            ],\n            [\n              -81.49417877197266,\n              30.813513165869683\n            ],\n            [\n              -81.49486541748047,\n              30.853016145357284\n            ],\n            [\n              -81.51134490966797,\n              30.879244211704183\n            ],\n            [\n              -81.49417877197266,\n              30.907821682379147\n            ],\n            [\n              -81.4632797241211,\n              30.92107637538488\n            ],\n            [\n              -81.45538330078125,\n              30.926377738412445\n            ],\n            [\n              -81.44096374511719,\n              30.932856783043764\n            ],\n            [\n              -81.42997741699219,\n              30.95641324406724\n            ],\n            [\n              -81.42791748046875,\n              30.971133083069482\n            ],\n            [\n              -81.41555786132812,\n              30.981729962028048\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","contact":"<p>Director, South Atlantic Water Science Center <br /> U.S. Geological Survey <br /> 720 Gracern Road <br /> Columbia, SC 29210 <br /> <a href=\"http://www.usgs.gov/water/southatlantic/\">http://www.usgs.gov/water/southatlantic/</a></p>","tableOfContents":"<ul>\n<li>Acknowledgments&nbsp;</li>\n<li>Abstract</li>\n<li>Introduction</li>\n<li>Purpose and Scope</li>\n<li>Methods</li>\n<li>Site Selection and Description</li>\n<li>Back-Barrier Erosion and Causative Agents</li>\n<li>Projections of Future Shoreline Positions</li>\n<li>Discussion</li>\n<li>Summary</li>\n<li>References Cited</li>\n<li>Appendix 1.&nbsp;Field Calibration Information From In Situ Photo-Electronic Erosion Pins</li>\n<li>Appendix 2.&nbsp;Campbell Scientific Program Used for In Situ Monitoring Instruments &nbsp;During the Back-Barrier Erosion Project at Cumberland Island National Seashore</li>\n<li>Appendix 3.&nbsp;Campbell Scientific Wiring Diagram Used During the Back-Barrier Erosion Project at Cumberland Island National Seashore&nbsp;</li>\n</ul>","publishingServiceCenter":{"id":8,"text":"Raleigh PSC"},"publishedDate":"2016-07-15","noUsgsAuthors":false,"publicationDate":"2016-07-15","publicationStatus":"PW","scienceBaseUri":"5789fb23e4b0c1aacab77896","contributors":{"authors":[{"text":"Calhoun, Daniel L. 0000-0003-2371-6936 dcalhoun@usgs.gov","orcid":"https://orcid.org/0000-0003-2371-6936","contributorId":1455,"corporation":false,"usgs":true,"family":"Calhoun","given":"Daniel","email":"dcalhoun@usgs.gov","middleInitial":"L.","affiliations":[{"id":316,"text":"Georgia Water Science Center","active":true,"usgs":true},{"id":13634,"text":"South Atlantic Water Science Center","active":true,"usgs":true}],"preferred":true,"id":630431,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Riley, Jeffrey W. 0000-0001-5525-3134 jriley@usgs.gov","orcid":"https://orcid.org/0000-0001-5525-3134","contributorId":3605,"corporation":false,"usgs":true,"family":"Riley","given":"Jeffrey","email":"jriley@usgs.gov","middleInitial":"W.","affiliations":[{"id":13634,"text":"South Atlantic Water Science Center","active":true,"usgs":true},{"id":316,"text":"Georgia Water Science Center","active":true,"usgs":true}],"preferred":true,"id":630432,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70174224,"text":"fs20163050 - 2016 - Assessment of continuous oil and gas resources of the Cooper Basin, Australia, 2016","interactions":[],"lastModifiedDate":"2016-08-15T09:37:45","indexId":"fs20163050","displayToPublicDate":"2016-07-15T10:15:00","publicationYear":"2016","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":5,"text":"USGS Numbered Series"},"seriesTitle":{"id":313,"text":"Fact Sheet","code":"FS","onlineIssn":"2327-6932","printIssn":"2327-6916","active":true,"publicationSubtype":{"id":5}},"seriesNumber":"2016-3050","title":"Assessment of continuous oil and gas resources of the Cooper Basin, Australia, 2016","docAbstract":"<p>Using a geology-based assessment methodology, the U.S. Geological Survey estimated mean continuous resources of 482 million barrels of oil and 29.8 trillion cubic feet of gas in the Cooper Basin of Australia.</p>","language":"English","publisher":"U.S. Geological Survey","publisherLocation":"Reston, VA","doi":"10.3133/fs20163050","usgsCitation":"Schenk, C.J., Tennyson, M.E.,  Mercier, T.J., Klett, T.R., Finn, T.M., Le, P.A., Brownfield, M.E., Gaswirth, S.B., Marra, K.R., Hawkins, S.J., and Leathers-Miller, H.M., 2016, Assessment of continuous oil and gas resources of the Cooper Basin, Australia, 2016: U.S. Geological Survey Fact Sheet 2016–3050, 2 p., https://dx.doi.org/10.3133/fs20163050.","productDescription":"Report: 2 p.","numberOfPages":"2","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-074116","costCenters":[{"id":164,"text":"Central Energy Resources Science Center","active":true,"usgs":true}],"links":[{"id":325186,"rank":2,"type":{"id":11,"text":"Document"},"url":"https://pubs.usgs.gov/fs/2016/3050/fs20163050.pdf","text":"Report","size":"1.44 MB","linkFileType":{"id":1,"text":"pdf"},"description":"FS 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Models for Assessment</li><li>Continuous Resource Summary</li><li>Acknowledgments</li><li>References Cited</li></ul>","publishingServiceCenter":{"id":2,"text":"Denver PSC"},"publishedDate":"2016-07-15","noUsgsAuthors":false,"publicationDate":"2016-07-15","publicationStatus":"PW","scienceBaseUri":"5789fb21e4b0c1aacab77890","contributors":{"authors":[{"text":"Schenk, Christopher J. 0000-0002-0248-7305 schenk@usgs.gov","orcid":"https://orcid.org/0000-0002-0248-7305","contributorId":826,"corporation":false,"usgs":true,"family":"Schenk","given":"Christopher","email":"schenk@usgs.gov","middleInitial":"J.","affiliations":[{"id":255,"text":"Energy Resources Program","active":true,"usgs":true},{"id":164,"text":"Central Energy Resources Science Center","active":true,"usgs":true}],"preferred":true,"id":641391,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Tennyson, Marilyn E. 0000-0002-5166-2421 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A.","email":"ple@usgs.gov","affiliations":[{"id":164,"text":"Central Energy Resources Science Center","active":true,"usgs":true}],"preferred":false,"id":642346,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Brownfield, Michael E. 0000-0003-3633-1138 mbrownfield@usgs.gov","orcid":"https://orcid.org/0000-0003-3633-1138","contributorId":1548,"corporation":false,"usgs":true,"family":"Brownfield","given":"Michael","email":"mbrownfield@usgs.gov","middleInitial":"E.","affiliations":[{"id":164,"text":"Central Energy Resources Science Center","active":true,"usgs":true}],"preferred":true,"id":642347,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Gaswirth, Stephanie B. 0000-0001-5821-6347 sgaswirth@usgs.gov","orcid":"https://orcid.org/0000-0001-5821-6347","contributorId":3109,"corporation":false,"usgs":true,"family":"Gaswirth","given":"Stephanie B.","email":"sgaswirth@usgs.gov","affiliations":[{"id":164,"text":"Central Energy Resources Science 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,{"id":70176581,"text":"70176581 - 2016 - Parameter regionalization of a monthly water balance model for the conterminous United States","interactions":[],"lastModifiedDate":"2018-07-09T12:13:29","indexId":"70176581","displayToPublicDate":"2016-07-15T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1928,"text":"Hydrology and Earth System Sciences","active":true,"publicationSubtype":{"id":10}},"title":"Parameter regionalization of a monthly water balance model for the conterminous United States","docAbstract":"<p><span class=\"pb_abstract\">A parameter regionalization scheme to transfer parameter values from gaged to ungaged areas for a monthly water balance model (MWBM) was developed and tested for the conterminous United States (CONUS). The Fourier Amplitude Sensitivity Test, a global-sensitivity algorithm, was implemented on a MWBM to generate parameter sensitivities on a set of 109 951 hydrologic response units (HRUs) across the CONUS. The HRUs were grouped into 110 calibration regions based on similar parameter sensitivities. Subsequently, measured runoff from 1575 streamgages within the calibration regions were used to calibrate the MWBM parameters to produce parameter sets for each calibration region. Measured and simulated runoff at the 1575 streamgages showed good correspondence for the majority of the CONUS, with a median computed Nash–Sutcliffe efficiency coefficient of 0.76 over all streamgages. These methods maximize the use of available runoff information, resulting in a calibrated CONUS-wide application of the MWBM suitable for providing estimates of water availability at the HRU resolution for both gaged and ungaged areas of the CONUS.</span>  </p>","language":"English","publisher":"European Geosciences Union","doi":"10.5194/hess-20-2861-2016","usgsCitation":"Bock, A.R., Hay, L.E., McCabe, G., Markstrom, S.L., and Atkinson, R., 2016, Parameter regionalization of a monthly water balance model for the conterminous United States: Hydrology and Earth System Sciences, v. 20, p. 2861-2876, https://doi.org/10.5194/hess-20-2861-2016.","productDescription":"16 p.","startPage":"2861","endPage":"2876","ipdsId":"IP-067200","costCenters":[{"id":191,"text":"Colorado Water Science Center","active":true,"usgs":true},{"id":37273,"text":"Advanced Research Computing (ARC)","active":true,"usgs":true}],"links":[{"id":470749,"rank":3,"type":{"id":40,"text":"Open Access Publisher Index 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Branch","active":true,"usgs":true}],"preferred":true,"id":649267,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"McCabe, Gregory J. 0000-0002-9258-2997 gmccabe@usgs.gov","orcid":"https://orcid.org/0000-0002-9258-2997","contributorId":1453,"corporation":false,"usgs":true,"family":"McCabe","given":"Gregory J.","email":"gmccabe@usgs.gov","affiliations":[{"id":218,"text":"Denver Federal Center","active":false,"usgs":true}],"preferred":false,"id":649268,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Markstrom, Steven L. 0000-0001-7630-9547 markstro@usgs.gov","orcid":"https://orcid.org/0000-0001-7630-9547","contributorId":140378,"corporation":false,"usgs":true,"family":"Markstrom","given":"Steven","email":"markstro@usgs.gov","middleInitial":"L.","affiliations":[{"id":5044,"text":"National Research Program - Central Branch","active":true,"usgs":true}],"preferred":false,"id":649269,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Atkinson, R. Dwight","contributorId":174777,"corporation":false,"usgs":false,"family":"Atkinson","given":"R. Dwight","affiliations":[{"id":27513,"text":"U.S. Environmental Protection Agency, Office of Water","active":true,"usgs":false}],"preferred":false,"id":649270,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70171111,"text":"sir20165064 - 2016 - Missouri River Scaphirhynchus albus (pallid sturgeon) effects analysis—Integrative report 2016","interactions":[],"lastModifiedDate":"2021-08-24T14:57:07.733838","indexId":"sir20165064","displayToPublicDate":"2016-07-15T00:00:00","publicationYear":"2016","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":"2016-5064","displayTitle":"Missouri River <i>Scaphirhynchus albus</i> (pallid sturgeon) effects analysis—Integrative report 2016","title":"Missouri River Scaphirhynchus albus (pallid sturgeon) effects analysis—Integrative report 2016","docAbstract":"<p>The Missouri River Pallid Sturgeon Effects Analysis was designed to carry out three components of an assessment of how Missouri River management has affected, and will affect, population dynamics of endangered <i>Scaphirhynchus albus</i> (pallid sturgeon): (1) collection of reliable scientific information, (2) critical assessment and synthesis of available data and analyses, and (3) analysis of the effects of actions on listed species and their habitats. This report is a synthesis of the three components emphasizing development of lines of evidence relating potential future management actions to pallid sturgeon population dynamics. We address 21 working management hypotheses that emerged from an expert opinion-based filtering process.</p><p>The ability to quantify linkages from abiotic changes to pallid sturgeon population dynamics is compromised by fundamental information gaps. Although a substantial foundation of pallid sturgeon science has been developed during the past 20 years, our efforts attempt to push beyond that understanding to provide predictions of how future management actions may affect pallid sturgeon responses. For some of the 21 hypotheses, lines of evidence are limited to theoretical deduction, inference from sparse empirical datasets, or expert opinion. Useful simulation models have been developed to predict the effects of management actions on survival of drifting pallid sturgeon free embryos in the Yellowstone and Upper Missouri River complex (hereafter referred to as the “upper river”), and to assess the effects of flow and channel reconfigurations on habitat availability in the Lower Missouri River, tributaries, and Mississippi River downstream of Gavins Point Dam (hereafter referred to as the “lower river”). A population model also has been developed that can be used to assess sensitivity of the population to survival of specific life stages, assess some hypotheses related to stocking decisions, and explore a limited number of management scenarios.</p><p>Consideration of lines of evidence for each of the 21 hypotheses includes a discussion of how the degree of uncertainty and risk associated with each hypothesis may guide science and implementation strategies. Implementation strategies include full implementation in the field, limited implementations as field-scale experiments, or (in the case of greatest uncertainty) implementation as learning actions, including research and opportunistic experiments or field-based gradient studies. Given the substantive uncertainties associated with pallid sturgeon population dynamics and the need to continually assimilate and assess new information, we proposed that an Effects Analysis-like process should be considered an integral part of ongoing Missouri River adaptive management.</p>","language":"English","publisher":"U.S. Geological Survey","publisherLocation":"Reston, VA","doi":"10.3133/sir20165064","collaboration":"Prepared in cooperation with the Missouri River Recovery Program","usgsCitation":"Jacobson, R.B., Annis, M.L., Colvin, M.E., James, D.A., Welker, T.L., and Parsley, M.J., 2016, Missouri River <i>Scaphirhynchus albus</i> (pallid sturgeon) effects analysis—Integrative report 2016: U.S. Geological Survey Scientific Investigations Report 2016–5064, 154 p., https://dx.doi.org/10.3133/sir20165064.","productDescription":"xv, 154 p.","numberOfPages":"174","onlineOnly":"Y","additionalOnlineFiles":"N","ipdsId":"IP-064765","costCenters":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true},{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true}],"links":[{"id":325271,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/sir/2016/5064/coverthb.jpg"},{"id":325272,"rank":2,"type":{"id":11,"text":"Document"},"url":"https://pubs.usgs.gov/sir/2016/5064/sir20165064.pdf","text":"Report","size":"18.4 MB","linkFileType":{"id":1,"text":"pdf"},"description":"SIR 2016–5064"}],"country":"United States","state":"Missouri","otherGeospatial":"Missouri River Basin","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -114.80712890625,\n              48.922499263758255\n            ],\n            [\n              -114.67529296874999,\n              47.931066347509784\n          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}\n    }\n  ]\n}","contact":"<p>Director, Columbia Environmental Research Center (CERC) <br />U.S. Geological Survey<br />4200 New Haven Road <br />Columbia, MO 65201</p>\n<p><a href=\"http://www.cerc.usgs.gov/\">http://www.cerc.usgs.gov/</a></p>","tableOfContents":"<ul>\n<li>Abstract</li>\n<li>Introduction</li>\n<li>Background of the Missouri River and Pallid Sturgeon</li>\n<li>Quantitative Modeling Framework</li>\n<li>Assessment of the Effects of Management Actions</li>\n<li>Discussion</li>\n<li>Summary and Conclusions</li>\n<li>References Cited</li>\n<li>Appendix 1. Pallid Sturgeon Spawning Habitat on the Lower Missouri and&nbsp;Yellowstone Rivers</li>\n<li>Appendix 2. Spatial Distributions of Interception Habitat Potential, Lower Missouri Rive</li>\n</ul>\n<p>&nbsp;</p>","publishingServiceCenter":{"id":4,"text":"Rolla PSC"},"publishedDate":"2016-07-15","noUsgsAuthors":false,"publicationDate":"2016-07-15","publicationStatus":"PW","scienceBaseUri":"5789fb23e4b0c1aacab77894","contributors":{"authors":[{"text":"Jacobson, Robert B. 0000-0002-8368-2064 rjacobson@usgs.gov","orcid":"https://orcid.org/0000-0002-8368-2064","contributorId":1289,"corporation":false,"usgs":true,"family":"Jacobson","given":"Robert","email":"rjacobson@usgs.gov","middleInitial":"B.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":629913,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Annis, Mandy L. mannis@usgs.gov","contributorId":3498,"corporation":false,"usgs":true,"family":"Annis","given":"Mandy","email":"mannis@usgs.gov","middleInitial":"L.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":false,"id":629914,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Colvin, Michael E.","contributorId":140975,"corporation":false,"usgs":false,"family":"Colvin","given":"Michael E.","affiliations":[{"id":6680,"text":"Oregon State University","active":true,"usgs":false}],"preferred":false,"id":629915,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"James, Daniel A.","contributorId":41737,"corporation":false,"usgs":true,"family":"James","given":"Daniel","email":"","middleInitial":"A.","affiliations":[],"preferred":false,"id":629916,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Welker, Timothy L.","contributorId":140976,"corporation":false,"usgs":false,"family":"Welker","given":"Timothy","email":"","middleInitial":"L.","affiliations":[{"id":590,"text":"U.S. Army Corps of Engineers","active":false,"usgs":false}],"preferred":false,"id":629917,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Parsley, Michael J. 0000-0003-0097-6364 mparsley@usgs.gov","orcid":"https://orcid.org/0000-0003-0097-6364","contributorId":2608,"corporation":false,"usgs":true,"family":"Parsley","given":"Michael","email":"mparsley@usgs.gov","middleInitial":"J.","affiliations":[{"id":654,"text":"Western Fisheries Research Center","active":true,"usgs":true}],"preferred":true,"id":629918,"contributorType":{"id":1,"text":"Authors"},"rank":6}]}}
,{"id":70174680,"text":"70174680 - 2016 - Wound repair in <i>Pocillopora</i>","interactions":[],"lastModifiedDate":"2018-02-20T15:25:23","indexId":"70174680","displayToPublicDate":"2016-07-14T15:15:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2361,"text":"Journal of Invertebrate Pathology","active":true,"publicationSubtype":{"id":10}},"displayTitle":"Wound repair in Pocillopora","title":"Wound repair in <i>Pocillopora</i>","docAbstract":"<p><span>Corals routinely lose tissue due to causes ranging from predation to disease. Tissue healing and regeneration are fundamental to the normal functioning of corals, yet we know little about this process. We described the microscopic morphology of wound repair in&nbsp;</span><i>Pocillopora damicornis</i><span>. Tissue was removed by airbrushing fragments from three healthy colonies, and these were monitored daily at the gross and microscopic level for 40&nbsp;days. Grossly, corals healed by Day 30, but repigmentation was not evident at the end of the study (40&nbsp;d). On histology, from Day 8 onwards, tissues at the lesion site were microscopically indistinguishable from adjacent normal tissues with evidence of zooxanthellae in gastrodermis. Inflammation was not evident.&nbsp;</span><i>P</i><span>.&nbsp;</span><i>damicornis</i><span>&nbsp;manifested a unique mode of regeneration involving projections of cell-covered mesoglea from the surface body wall that anastomosed to form gastrovascular canals.</span></p>","language":"English","publisher":"Elsevier","doi":"10.1016/j.jip.2016.07.002","usgsCitation":"Rodríguez-Villalobos, J., Work, T.M., and Calderon-Aguileraa, L.E., 2016, Wound repair in <i>Pocillopora</i>: Journal of Invertebrate Pathology, v. 139, p. 1-5, https://doi.org/10.1016/j.jip.2016.07.002.","productDescription":"5 p.","startPage":"1","endPage":"5","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-071627","costCenters":[{"id":456,"text":"National Wildlife Health Center","active":true,"usgs":true}],"links":[{"id":325254,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"139","publishingServiceCenter":{"id":6,"text":"Columbus PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","scienceBaseUri":"5788a99ce4b0d27deb3813d0","contributors":{"authors":[{"text":"Rodríguez-Villalobos, Jenny Carolina","contributorId":98224,"corporation":false,"usgs":true,"family":"Rodríguez-Villalobos","given":"Jenny Carolina","affiliations":[],"preferred":false,"id":642477,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Work, Thierry M. 0000-0002-4426-9090 thierry_work@usgs.gov","orcid":"https://orcid.org/0000-0002-4426-9090","contributorId":1187,"corporation":false,"usgs":true,"family":"Work","given":"Thierry","email":"thierry_work@usgs.gov","middleInitial":"M.","affiliations":[{"id":456,"text":"National Wildlife Health Center","active":true,"usgs":true}],"preferred":true,"id":642476,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Calderon-Aguileraa, Luis Eduardo","contributorId":172902,"corporation":false,"usgs":false,"family":"Calderon-Aguileraa","given":"Luis","email":"","middleInitial":"Eduardo","affiliations":[{"id":27115,"text":"Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE) Carretera Ensenada-Tijuana, # 3918, Zona Playitas, C.P. 22860, Ensenada, BC, México","active":true,"usgs":false}],"preferred":false,"id":642478,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70174876,"text":"70174876 - 2016 - Theory and application of semiochemicals in nuisance fish control","interactions":[],"lastModifiedDate":"2016-09-16T16:37:43","indexId":"70174876","displayToPublicDate":"2016-07-14T14:30:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":2205,"text":"Journal of Chemical Ecology","active":true,"publicationSubtype":{"id":10}},"title":"Theory and application of semiochemicals in nuisance fish control","docAbstract":"<p>Controlling unwanted, or nuisance, fishes is becoming an increasingly urgent issue with few obvious solutions. Because fish rely heavily on semiochemicals, or chemical compounds that convey information between and within species, to mediate aspects of their life histories, these compounds are increasingly being considered as an option to help control wild fish. Possible uses of semiochemicals include measuring their presence in water to estimate population size, adding them to traps to count or remove specific species of fish, adding them to waterways to manipulate large-scale movement patterns, and saturating the environment with synthesized semiochemicals to disrupt responses to the natural cue. These applications may be especially appropriate for pheromones, chemical signals that pass between members of same species and which also have extreme specificity and potency. Alarm cues, compounds released by injured fish, and cues released by potential predators also could function as repellents and be especially useful if paired with pheromonal attractants in &ldquo;push-pull&rdquo; configurations. Approximately half a dozen attractive pheromones now have been partially identified in fish, and those for the sea lamprey and the common carp have been tested in the field with modest success. Alarm and predator cues for sea lamprey also have been tested in the laboratory and field with some success. Success has been hampered by our incomplete understanding of chemical identity, a lack of synthesized compounds, the fact that laboratory bioassays do not always reflect natural environments, and the relative difficulty of conducting trials on wild fishes because of short field seasons and regulatory requirements. Nevertheless, workers continue efforts to identify pheromones because of the great potential elucidated by insect control and the fact that few tools are available to control nuisance fish. Approaches developed for nuisance fish also could be applied to valued fishes, which suffer from a lack of powerful management tools.</p>","language":"English","publisher":"Springer","doi":"10.1007/s10886-016-0729-4","usgsCitation":"Sorensen, P.W., and Johnson, N., 2016, Theory and application of semiochemicals in nuisance fish control: Journal of Chemical Ecology, v. 42, no. 7, p. 698-715, https://doi.org/10.1007/s10886-016-0729-4.","productDescription":"18 p.","startPage":"698","endPage":"715","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-077173","costCenters":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"links":[{"id":325477,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"42","issue":"7","publishingServiceCenter":{"id":6,"text":"Columbus PSC"},"noUsgsAuthors":false,"publicationDate":"2016-07-14","publicationStatus":"PW","scienceBaseUri":"5790a191e4b030378fb47467","contributors":{"authors":[{"text":"Sorensen, Peter W.","contributorId":49720,"corporation":false,"usgs":true,"family":"Sorensen","given":"Peter","email":"","middleInitial":"W.","affiliations":[],"preferred":false,"id":642945,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Johnson, Nicholas S. 0000-0002-7419-6013 njohnson@usgs.gov","orcid":"https://orcid.org/0000-0002-7419-6013","contributorId":150983,"corporation":false,"usgs":true,"family":"Johnson","given":"Nicholas S.","email":"njohnson@usgs.gov","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":642944,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70173928,"text":"ofr20161101 - 2016 - Low-flow frequency and flow duration of selected South Carolina streams in the Savannah and Salkehatchie River Basins through March 2014","interactions":[],"lastModifiedDate":"2016-11-15T09:31:00","indexId":"ofr20161101","displayToPublicDate":"2016-07-14T14:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":5,"text":"USGS Numbered Series"},"seriesTitle":{"id":330,"text":"Open-File Report","code":"OFR","onlineIssn":"2331-1258","printIssn":"0196-1497","active":true,"publicationSubtype":{"id":5}},"seriesNumber":"2016-1101","title":"Low-flow frequency and flow duration of selected South Carolina streams in the Savannah and Salkehatchie River Basins through March 2014","docAbstract":"<p>An ongoing understanding of streamflow characteristics of the rivers and streams in South Carolina is important for the protection and preservation of the State’s water resources. Information concerning the low-flow characteristics of streams is especially important during critical flow periods, such as during the historic droughts that South Carolina has experienced in the past few decades.</p><p>In 2008, the U.S. Geological Survey, in cooperation with the South Carolina Department of Health and Environmental Control, initiated a study to update low-flow statistics at continuous-record streamgaging stations operated by the U.S. Geological Survey in South Carolina. This report presents the low-flow statistics for 28 selected streamgaging stations in the Savannah and Salkehatchie River Basins in South Carolina. The low-flow statistics include daily mean flow durations for the 5-, 10-, 25-, 50-, 75-, 90-, and 95-percent probability of exceedance and the annual minimum 1-, 3-, 7-, 14-, 30-, 60-, and 90-day mean flows with recurrence intervals of 2, 5, 10, 20, 30, and 50 years, depending on the length of record available at the streamgaging station. The low-flow statistics were computed from records available through March 31, 2014.</p><p>Low-flow statistics are influenced by length of record, hydrologic regime under which the data were collected, analytical techniques used, and other factors, such as urbanization, diversions, and droughts that may have occurred in the basin. To assess changes in the low-flow statistics from the previously published values, a comparison of the low-flow statistics for the annual minimum 7-day average streamflow with a 10-year recurrence interval (7Q10) from this study was made with the most recently published values. Of the 28 streamgaging stations for which recurrence interval computations were made, 14 streamgaging stations were suitable for comparing to low-flow statistics that were previously published in U.S. Geological Survey reports. These comparisons indicated that seven of the streamgaging stations had values lower than the previous values, two streamgaging stations had values higher than the previous values, and two streamgaging stations had values that were unchanged from previous values. The remaining three stations for which previous 7Q10 values were computed, which are located on the main stem of the Savannah River, were not compared with current estimates because of differences in the way the pre-regulation and regulated flow data were analyzed.</p>","language":"English","publisher":"U.S. Geological Survey","publisherLocation":"Reston, VA","doi":"10.3133/ofr20161101","collaboration":"Prepared in cooperation with the South Carolina Department of Health and Environmental Control","usgsCitation":"Feaster, T.D., and Guimaraes, W.B., 2016, Low-flow frequency and flow duration of selected South Carolina streams in the Savannah and Salkehatchie River Basins through March 2014 (ver. 1.1, November 2016): U.S. Geological Survey Open-File Report 2016–1101, 62 p., https://dx.doi.org/10.3133/ofr20161101.","productDescription":"vi, 62 p.","numberOfPages":"72","onlineOnly":"Y","additionalOnlineFiles":"Y","ipdsId":"IP-074376","costCenters":[{"id":13634,"text":"South Atlantic Water 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Carolina\",\"nation\":\"USA  \"}}]}","edition":"Version 1.0: Originally posted July 14, 2016; Version 1.1: November 14, 2016","contact":"<p>Director, South Atlantic Water Science Center<br /> U.S. Geological Survey <br /> 720 Gracern Road<br /> Columbia, SC 29210<br /> <a href=\"http://www.usgs.gov/water/southatlantic/\">http://www.usgs.gov/water/southatlantic/</a></p>","tableOfContents":"<ul>\n<li>Abstract&nbsp;</li>\n<li>Introduction</li>\n<li>Low-Flow Statistics</li>\n<li>Analytical Considerations</li>\n<li>Considerations for Accuracy of Low-Flow Statistics</li>\n<li>Comparison With Previously Published Low-Flow Statistics</li>\n<li>Summary</li>\n<li>Selected References</li>\n</ul>","publishingServiceCenter":{"id":9,"text":"Reston PSC"},"publishedDate":"2016-07-14","revisedDate":"2016-11-14","noUsgsAuthors":false,"publicationDate":"2016-07-14","publicationStatus":"PW","scienceBaseUri":"5788a99ce4b0d27deb3813ca","contributors":{"authors":[{"text":"Feaster, Toby D. tfeaster@usgs.gov","contributorId":152051,"corporation":false,"usgs":true,"family":"Feaster","given":"Toby D.","email":"tfeaster@usgs.gov","affiliations":[{"id":559,"text":"South Carolina Water Science Center","active":true,"usgs":true}],"preferred":false,"id":639483,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Guimaraes, Wladmir B. wbguimar@usgs.gov","contributorId":3818,"corporation":false,"usgs":true,"family":"Guimaraes","given":"Wladmir","email":"wbguimar@usgs.gov","middleInitial":"B.","affiliations":[{"id":559,"text":"South Carolina Water Science Center","active":true,"usgs":true}],"preferred":true,"id":639484,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70173917,"text":"gip164 - 2016 - Mangrove postcard","interactions":[],"lastModifiedDate":"2016-07-28T11:38:33","indexId":"gip164","displayToPublicDate":"2016-07-14T12:15:00","publicationYear":"2016","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":5,"text":"USGS Numbered Series"},"seriesTitle":{"id":315,"text":"General Information Product","code":"GIP","onlineIssn":"2332-354X","printIssn":"2332-3531","active":false,"publicationSubtype":{"id":5}},"seriesNumber":"164","title":"Mangrove postcard","docAbstract":"<p>Mangrove ecosystems protect vulnerable coastlines from storm effects, recycle nutrients, stabilize shorelines, improve water quality, and provide habitat for commercial and recreational fish species as well as for threatened and endangered wildlife. U.S. Geological Survey scientists conduct research on mangrove ecosystems to provide reliable scientific information about their ecology, productivity, hydrological processes, carbon storage stress response, and restoration success. The Mangrove Science Network is a collaboration of USGS scientists focused on working with natural resource managers to develop and conduct research to inform decisions on mangrove management and restoration. Information about the Mangrove Science Network can be found at: <a href=\"http://www.usgs.gov/ecosystems/environments/mangroves.html\">http://www.usgs.gov/ecosystems/environments/mangroves.html</a>.</p>","language":"English","publisher":"U.S. Geological Survey","publisherLocation":"Reston, VA","doi":"10.3133/gip164","usgsCitation":"Ball, L.C., 2016, Mangrove postcard: U.S. Geological Survey General Information Product 164, 2 p., https://dx.doi.org/10.3133/gip164.","productDescription":"Postcard: 4.25 x 6.00 inches","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-075295","costCenters":[{"id":506,"text":"Office of the AD Ecosystems","active":true,"usgs":true}],"links":[{"id":323722,"rank":2,"type":{"id":11,"text":"Document"},"url":"https://pubs.usgs.gov/gip/0164/gip164.pdf","text":"Report","size":"797 KB","linkFileType":{"id":1,"text":"pdf"},"description":"GIP 164"},{"id":323721,"rank":1,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/gip/0164/coverthb.jpg"}],"publicComments":"This product was prepared for dissemination at the USGS booth at the Fourth Mangrove and Macrobenthos Meeting (MMM4), which was held July 18--22, 2016, in St. Augustine, Fla.","contact":"<p>Science Advisor, Environments Program<br /> Ecosystems Mission Area<br /> U.S. Geological Survey<br /> 301 National Center<br /> Reston, VA 20192<br /> <a href=\"https://www.usgs.gov/science/mission-areas/ecosystems/environments-program\">https://www.usgs.gov/science/mission-areas/ecosystems/environments-program</a></p>","publishingServiceCenter":{"id":9,"text":"Reston PSC"},"publishedDate":"2016-07-14","noUsgsAuthors":false,"publicationDate":"2016-07-14","publicationStatus":"PW","scienceBaseUri":"5788a99ce4b0d27deb3813cc","contributors":{"authors":[{"text":"Ball, Lianne C. 0000-0001-9331-0718 lball@usgs.gov","orcid":"https://orcid.org/0000-0001-9331-0718","contributorId":4274,"corporation":false,"usgs":true,"family":"Ball","given":"Lianne","email":"lball@usgs.gov","middleInitial":"C.","affiliations":[{"id":506,"text":"Office of the AD Ecosystems","active":true,"usgs":true}],"preferred":true,"id":639107,"contributorType":{"id":1,"text":"Authors"},"rank":1}]}}
,{"id":70174672,"text":"70174672 - 2016 - Assessing the influence of watershed characteristics on chlorophyll a in waterbodies at global and regional scales","interactions":[],"lastModifiedDate":"2018-01-02T20:44:35","indexId":"70174672","displayToPublicDate":"2016-07-14T11:15:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1999,"text":"Inland Waters","active":true,"publicationSubtype":{"id":10}},"title":"Assessing the influence of watershed characteristics on chlorophyll a in waterbodies at global and regional scales","docAbstract":"<p>Prediction of primary production of lentic water bodies (i.e., lakes and reservoirs) is valuable to researchers and resource managers alike, but is very rarely done at the global scale. With the development of remote sensing technologies, it is now feasible to gather large amounts of data across the world, including understudied and remote regions. To determine which factors were most important in explaining the variation of chlorophyll a (Chl-<i>a</i>), an indicator of primary production in water bodies, at global and regional scales, we first developed a geospatial database of 227 water bodies and watersheds with corresponding Chl-<i>a</i>, nutrient, hydrogeomorphic, and climate data. Then we used a generalized additive modeling approach and developed model selection criteria to select models that most parsimoniously related Chl-<i>a</i> to predictor variables for all 227 water bodies and for 51 lakes in the Laurentian Great Lakes region in the data set. Our best global model contained two hydrogeomorphic variables (water body surface area and the ratio of watershed to water body surface area) and a climate variable (average temperature in the warmest model selection criteria to select models that most parsimoniously related Chl-<i>a</i> to predictor variables quarter) and explained ~ 30% of variation in Chl-<i>a</i>. Our regional model contained one hydrogeomorphic variable (flow accumulation) and the same climate variable, but explained substantially more variation (58%). Our results indicate that a regional approach to watershed modeling may be more informative to predicting Chl-<i>a</i>, and that nearly a third of global variability in Chl-<i>a</i> may be explained using hydrogeomorphic and climate variables.</p>","language":"English","publisher":"International Society of Limnology","doi":"10.1080/IW-6.3.964","usgsCitation":"Woelmer, W., Kao, Y., Bunnell, D., Deines, A.M., Bennion, D., Rogers, M.W., Brooks, C., Sayers, M.J., Banach, D.M., Grimm, A.G., and Shuchman, R.A., 2016, Assessing the influence of watershed characteristics on chlorophyll a in waterbodies at global and regional scales: Inland Waters, v. 6, no. 3, p. 379-392, https://doi.org/10.1080/IW-6.3.964.","productDescription":"14 p.","startPage":"379","endPage":"392","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-071310","costCenters":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"links":[{"id":325241,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"volume":"6","issue":"3","publishingServiceCenter":{"id":6,"text":"Columbus PSC"},"noUsgsAuthors":false,"publicationDate":"2018-01-02","publicationStatus":"PW","scienceBaseUri":"5788a99ae4b0d27deb3813c2","contributors":{"authors":[{"text":"Woelmer, Whitney 0000-0001-5147-3877 wwoelmer@usgs.gov","orcid":"https://orcid.org/0000-0001-5147-3877","contributorId":150485,"corporation":false,"usgs":true,"family":"Woelmer","given":"Whitney","email":"wwoelmer@usgs.gov","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":642453,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Kao, Yu-Chun","contributorId":35626,"corporation":false,"usgs":false,"family":"Kao","given":"Yu-Chun","affiliations":[{"id":6649,"text":"University of Michigan, School of Natural Resources and Environment","active":true,"usgs":false}],"preferred":false,"id":642454,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Bunnell, David B. 0000-0003-3521-7747 dbunnell@usgs.gov","orcid":"https://orcid.org/0000-0003-3521-7747","contributorId":169859,"corporation":false,"usgs":true,"family":"Bunnell","given":"David B.","email":"dbunnell@usgs.gov","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":false,"id":642452,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Deines, Andrew M.","contributorId":166920,"corporation":false,"usgs":false,"family":"Deines","given":"Andrew","email":"","middleInitial":"M.","affiliations":[{"id":6601,"text":"Michigan State University","active":true,"usgs":false}],"preferred":false,"id":642455,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Bennion, David 0000-0003-4927-4195 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university","active":true,"usgs":false}],"preferred":false,"id":642461,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Shuchman, Robert A.","contributorId":150483,"corporation":false,"usgs":false,"family":"Shuchman","given":"Robert","email":"","middleInitial":"A.","affiliations":[{"id":16203,"text":"Michigan Technological university","active":true,"usgs":false}],"preferred":false,"id":642462,"contributorType":{"id":1,"text":"Authors"},"rank":11}]}}
,{"id":70174673,"text":"70174673 - 2016 - Long-term decreases in phosphorus and suspended solids, but not nitrogen, in six upper Mississippi River tributaries, 1991–2014","interactions":[],"lastModifiedDate":"2016-07-14T09:46:33","indexId":"70174673","displayToPublicDate":"2016-07-14T10:45:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1552,"text":"Environmental Monitoring and Assessment","onlineIssn":"1573-2959","printIssn":"0167-6369","active":true,"publicationSubtype":{"id":10}},"title":"Long-term decreases in phosphorus and suspended solids, but not nitrogen, in six upper Mississippi River tributaries, 1991–2014","docAbstract":"<p>Long-term trends in tributaries provide valuable information about temporal changes in inputs of nutrients and sediments to large rivers. Data collected from 1991 to 2014 were used to investigate trends in total nitrogen (TN), total phosphorus (TP), nitrate (NO3&ndash;N), soluble-reactive P (SRP), and total suspended solids (TSS) in the following six tributaries of the upper Mississippi River: Cannon (CaR; Minnesota (MN)), Maquoketa (MR; Iowa (IA)), Wapsipinicon (WR; IA), Cuivre (CuR; Missouri (MO)), Chippewa (ChR; Wisconsin (WI)), and Black (BR; WI) rivers. Weighted regression on time discharge and season was used to statistically remove effects of random variation in discharge from estimated trends in flow-normalized concentrations and flux. Concentration and flux of TSS declined in all six rivers. Concentration of P declined in four of the rivers, and P flux declined in five rivers. Concentration and flux of N exhibited small changes relative to TP. TN concentration and flux did not change substantially in four of the rivers and decreased in two (ChR, CuR). Nitrate concentration and flux increased in three rivers (ChR, BR, CaR) and remained relatively constant in the other three rivers. General declines in P and TSS suggest that improvements in agricultural land management, such as the adoption of conservation tillage and enrollment of vulnerable acreage into the Conservation Reserve Program, may have reduced surface runoff; similar reductions in N were not observed.</p>","language":"English","publisher":"Springer","doi":"10.1007/s10661-016-5464-3","usgsCitation":"Kreiling, R., and Houser, J.N., 2016, Long-term decreases in phosphorus and suspended solids, but not nitrogen, in six upper Mississippi River tributaries, 1991–2014: Environmental Monitoring and Assessment, v. 188, Article 454; 19 p., https://doi.org/10.1007/s10661-016-5464-3.","productDescription":"Article 454; 19 p.","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-072837","costCenters":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"links":[{"id":325238,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Illinois, Iowa, Minnesota, Missouri, Wisconsin","otherGeospatial":"Upper Mississippi River Watershed","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -96.94335937499999,\n              36.98500309285596\n            ],\n            [\n              -96.94335937499999,\n              47.60616304386874\n            ],\n            [\n              -87.4072265625,\n              47.60616304386874\n            ],\n            [\n              -87.4072265625,\n              36.98500309285596\n            ],\n            [\n              -96.94335937499999,\n              36.98500309285596\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"188","publishingServiceCenter":{"id":6,"text":"Columbus PSC"},"noUsgsAuthors":false,"publicationDate":"2016-07-08","publicationStatus":"PW","scienceBaseUri":"5788a99ce4b0d27deb3813c8","contributors":{"authors":[{"text":"Kreiling, Rebecca 0000-0002-9295-4156 rkreiling@usgs.gov","orcid":"https://orcid.org/0000-0002-9295-4156","contributorId":147679,"corporation":false,"usgs":true,"family":"Kreiling","given":"Rebecca","email":"rkreiling@usgs.gov","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":642463,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Houser, Jeffrey N. 0000-0003-3295-3132 jhouser@usgs.gov","orcid":"https://orcid.org/0000-0003-3295-3132","contributorId":2769,"corporation":false,"usgs":true,"family":"Houser","given":"Jeffrey","email":"jhouser@usgs.gov","middleInitial":"N.","affiliations":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":642464,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70174674,"text":"70174674 - 2016 - Assessing the sensitivity of avian species abundance to land cover and climate","interactions":[],"lastModifiedDate":"2016-07-14T09:54:59","indexId":"70174674","displayToPublicDate":"2016-07-14T10:45:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1475,"text":"Ecosphere","active":true,"publicationSubtype":{"id":10}},"title":"Assessing the sensitivity of avian species abundance to land cover and climate","docAbstract":"<p><span>Climate projections for the Midwestern United States predict southerly climates to shift northward. These shifts in climate could alter distributions of species across North America through changes in climate (i.e., temperature and precipitation), or through climate-induced changes on land cover. Our objective was to determine the relative impacts of land cover and climate on the abundance of five bird species in the Central United States that have habitat requirements ranging from grassland and shrubland to forest. We substituted space for time to examine potential impacts of a changing climate by assessing climate and land cover relationships over a broad latitudinal gradient. We found positive and negative relationships of climate and land cover factors with avian abundances. Habitat variables drove patterns of abundance in migratory and resident species, although climate was also influential in predicting abundance for some species occupying more open habitat (i.e., prairie warbler, blue-winged warbler, and northern bobwhite). Abundance of northern bobwhite increased with winter temperature and was the species exhibiting the most significant effect of climate. Models for birds primarily occupying early successional habitats performed better with a combination of habitat and climate variables whereas models of species found in contiguous forest performed best with land cover alone. These varied species-specific responses present unique challenges to land managers trying to balance species conservation over a variety of land covers. Management activities focused on increasing forest cover may play a role in mitigating effects of future climate by providing habitat refugia to species vulnerable to projected changes. Conservation efforts would be best served focusing on areas with high species abundances and an array of habitats. Future work managing forests for resilience and resistance to climate change could benefit species already susceptible to climate impacts.</span></p>","language":"English","publisher":"Ecological Society of America","doi":"10.1002/ecs2.1359","usgsCitation":"LeBrun, J.J., Thogmartin, W.E., Thompson, F.R., Dijak, W.D., and Millspaugh, J.J., 2016, Assessing the sensitivity of avian species abundance to land cover and climate: Ecosphere, v. 7, no. 6, e01359; 22 p., https://doi.org/10.1002/ecs2.1359.","productDescription":"e01359; 22 p.","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-066593","costCenters":[{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"links":[{"id":470750,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.1002/ecs2.1359","text":"Publisher Index Page"},{"id":325239,"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        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -98.26171875,\n              44.308126684886126\n            ],\n            [\n              -98.3056640625,\n              39.90973623453719\n            ],\n            [\n              -96.328125,\n              29.611670115197377\n            ],\n            [\n              -91.7138671875,\n              30.524413269923986\n            ],\n            [\n              -90.263671875,\n              34.994003757575776\n            ],\n            [\n              -85.67138671875,\n              35.02999636902566\n            ],\n            [\n              -83.16650390625,\n              38.685509760012\n            ],\n            [\n              -81.67236328125,\n              41.590796851056005\n            ],\n            [\n              -83.16650390625,\n              42.19596877629178\n            ],\n            [\n              -87.8466796875,\n              42.52069952914966\n            ],\n            [\n              -91.20849609375,\n              43.54854811091288\n            ],\n            [\n              -92.74658203125,\n              44.762336674810996\n            ],\n            [\n              -98.26171875,\n              44.308126684886126\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"7","issue":"6","publishingServiceCenter":{"id":6,"text":"Columbus PSC"},"noUsgsAuthors":false,"publicationDate":"2016-06-27","publicationStatus":"PW","scienceBaseUri":"5788a99be4b0d27deb3813c4","contributors":{"authors":[{"text":"LeBrun, Jaymi J.","contributorId":7959,"corporation":false,"usgs":true,"family":"LeBrun","given":"Jaymi","email":"","middleInitial":"J.","affiliations":[],"preferred":false,"id":642466,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Thogmartin, Wayne E. 0000-0002-2384-4279 wthogmartin@usgs.gov","orcid":"https://orcid.org/0000-0002-2384-4279","contributorId":2545,"corporation":false,"usgs":true,"family":"Thogmartin","given":"Wayne","email":"wthogmartin@usgs.gov","middleInitial":"E.","affiliations":[{"id":114,"text":"Alaska Science Center","active":true,"usgs":true},{"id":606,"text":"Upper Midwest Environmental Sciences Center","active":true,"usgs":true}],"preferred":true,"id":642465,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Thompson, Frank R. III","contributorId":12608,"corporation":false,"usgs":true,"family":"Thompson","given":"Frank","suffix":"III","email":"","middleInitial":"R.","affiliations":[],"preferred":false,"id":642467,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Dijak, William D.","contributorId":172897,"corporation":false,"usgs":false,"family":"Dijak","given":"William","email":"","middleInitial":"D.","affiliations":[{"id":13259,"text":"USDA Forest Service Northern Research Station","active":true,"usgs":false}],"preferred":false,"id":642468,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Millspaugh, Joshua J.","contributorId":22082,"corporation":false,"usgs":true,"family":"Millspaugh","given":"Joshua","email":"","middleInitial":"J.","affiliations":[],"preferred":false,"id":642469,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70171074,"text":"70171074 - 2016 - Islands in the ice stream: were spawning habitats for native salmonids in the Great Lakes created by paleo-ice streams?","interactions":[],"lastModifiedDate":"2017-03-14T08:37:37","indexId":"70171074","displayToPublicDate":"2016-07-14T10:30:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1652,"text":"Fish and Fisheries","active":true,"publicationSubtype":{"id":10}},"title":"Islands in the ice stream: were spawning habitats for native salmonids in the Great Lakes created by paleo-ice streams?","docAbstract":"<p><span>Lake trout&nbsp;</span><i>Salvelinus namaycush</i><span>, lake whitefish&nbsp;</span><i>Coregonus clupeaformis</i><span>&nbsp;and cisco&nbsp;</span><i>Coregonus artedi</i><span>&nbsp;are salmonid fishes native to the Laurentian Great Lakes that spawn on rocky substrates in the fall and early winter. After comparing the locations of spawning habitat for these species in the main basin of Lake Huron with surficial substrates and the hypothesized locations of fast-flowing Late Wisconsinan paleo-ice streams, we hypothesize that much of the spawning habitat for these species in Lake Huron is the result of deposition and erosion by paleo-ice streams. This hypothesis may represent a new framework for the identification and protection of spawning habitat for these native species, some of which are currently rare or extirpated in some of the Great Lakes. We further suggest that paleo-ice streams may have been responsible for the creation of native salmonid spawning habitat elsewhere in the Great Lakes and in other glaciated landscapes.</span></p>","language":"English","publisher":"John Wiley & Sons","doi":"10.1111/faf.12173","usgsCitation":"Riley, S., Binder, T., Tucker, T.R., Menzies, J., Eyles, N., Janssen, J., Muir, A., Esselman, P.C., Wattrus, N.J., and Krueger, C., 2016, Islands in the ice stream: were spawning habitats for native salmonids in the Great Lakes created by paleo-ice streams?: Fish and Fisheries, v. 18, no. 2, p. 347-359, https://doi.org/10.1111/faf.12173.","productDescription":"13 p.","startPage":"347","endPage":"359","onlineOnly":"N","additionalOnlineFiles":"N","ipdsId":"IP-072780","costCenters":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"links":[{"id":325236,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","otherGeospatial":"Lake Huron","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -84.83642578125,\n              42.84375132629021\n            ],\n            [\n              -84.83642578125,\n              46.11894150610708\n            ],\n            [\n              -81.123046875,\n              46.11894150610708\n            ],\n            [\n              -81.123046875,\n              42.84375132629021\n            ],\n            [\n              -84.83642578125,\n              42.84375132629021\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"18","issue":"2","publishingServiceCenter":{"id":6,"text":"Columbus PSC"},"noUsgsAuthors":false,"publicationDate":"2016-07-09","publicationStatus":"PW","scienceBaseUri":"5788a99be4b0d27deb3813c6","contributors":{"authors":[{"text":"Riley, Stephen 0000-0002-8968-8416 sriley@usgs.gov","orcid":"https://orcid.org/0000-0002-8968-8416","contributorId":169479,"corporation":false,"usgs":true,"family":"Riley","given":"Stephen","email":"sriley@usgs.gov","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":629752,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Binder, Thomas R.","contributorId":23056,"corporation":false,"usgs":false,"family":"Binder","given":"Thomas R.","affiliations":[{"id":7019,"text":"Great Lakes Fishery Commission","active":true,"usgs":false}],"preferred":false,"id":629753,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Tucker, Taaja R. 0000-0003-1534-4677 trtucker@usgs.gov","orcid":"https://orcid.org/0000-0003-1534-4677","contributorId":5172,"corporation":false,"usgs":true,"family":"Tucker","given":"Taaja","email":"trtucker@usgs.gov","middleInitial":"R.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":629754,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Menzies, John","contributorId":150901,"corporation":false,"usgs":false,"family":"Menzies","given":"John","email":"","affiliations":[{"id":18134,"text":"Brock University (Ontario, Canada)","active":true,"usgs":false}],"preferred":false,"id":629755,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Eyles, Nick","contributorId":169483,"corporation":false,"usgs":false,"family":"Eyles","given":"Nick","email":"","affiliations":[{"id":7044,"text":"University of Toronto","active":true,"usgs":false}],"preferred":false,"id":629756,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Janssen, John","contributorId":52543,"corporation":false,"usgs":true,"family":"Janssen","given":"John","affiliations":[],"preferred":false,"id":629757,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Muir, Andrew M.","contributorId":103933,"corporation":false,"usgs":false,"family":"Muir","given":"Andrew M.","affiliations":[],"preferred":false,"id":629758,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Esselman, Peter C. 0000-0002-0085-903X pesselman@usgs.gov","orcid":"https://orcid.org/0000-0002-0085-903X","contributorId":5965,"corporation":false,"usgs":true,"family":"Esselman","given":"Peter","email":"pesselman@usgs.gov","middleInitial":"C.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":629759,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Wattrus, Nigel J.","contributorId":150900,"corporation":false,"usgs":false,"family":"Wattrus","given":"Nigel","email":"","middleInitial":"J.","affiliations":[{"id":6915,"text":"University of Minnesota - Duluth","active":true,"usgs":false}],"preferred":false,"id":629760,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Krueger, Charles C.","contributorId":73131,"corporation":false,"usgs":true,"family":"Krueger","given":"Charles C.","affiliations":[],"preferred":false,"id":629761,"contributorType":{"id":1,"text":"Authors"},"rank":10}]}}
,{"id":70170565,"text":"70170565 - 2016 - Gas-hydrate-bearing sand reservoir systems in the offshore of India: Results of the India National Gas Hydrate Program Expedition 02","interactions":[],"lastModifiedDate":"2019-12-14T06:38:53","indexId":"70170565","displayToPublicDate":"2016-07-14T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1641,"text":"Fire in the Ice: NETL Methane Hydrate Newsletter","active":true,"publicationSubtype":{"id":10}},"title":"Gas-hydrate-bearing sand reservoir systems in the offshore of India: Results of the India National Gas Hydrate Program Expedition 02","docAbstract":"<p>The India National Gas Hydrate Program Expedition 02 (NGHP-02) was conducted from 3-March-2015 to 28-July-2015 off the eastern coast of India using the deepwater drilling vessel <i>Chikyu</i>. The primary goal of this expedition was to explore for highly saturated gas hydrate occurrences in sand reservoirs that would become targets for future production tests. The first two months of the expedition were dedicated to logging-whiledrilling (LWD) operations, with a total of 25 holes drilled and logged. The next three months were dedicated to coring operations at 10 of the most promising sites. With a total of five months of continuous field operations, the expedition was the most comprehensive dedicated gas hydrate investigation ever undertaken.</p>","language":"English","publisher":"National Energy Technology Laboratory","publisherLocation":"Morgantown, WV","usgsCitation":"Kumar, P., Collett, T.S., Vishwanath, K., Shukla, K., Nagalingam, J., Lall, M., Yamada, Y., Schultheiss, P., and Holland, M., 2016, Gas-hydrate-bearing sand reservoir systems in the offshore of India: Results of the India National Gas Hydrate Program Expedition 02: Fire in the Ice: NETL Methane Hydrate Newsletter, v. 16, no. 1, p. 1-8.","productDescription":"8 p.","startPage":"1","endPage":"8","ipdsId":"IP-075206","costCenters":[{"id":164,"text":"Central Energy Resources Science Center","active":true,"usgs":true}],"links":[{"id":340074,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"India","otherGeospatial":"Krishna-Godavari Basin, Mahanadi Basin","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              76.11328125,\n              12.039320557540572\n            ],\n            [\n              78.75,\n              7.18810087117902\n            ],\n            [\n              83.14453125,\n              8.754794702435618\n            ],\n            [\n              90.703125,\n              19.973348786110602\n            ],\n            [\n              88.06640625,\n              26.27371402440643\n            ],\n            [\n              78.22265625,\n              19.973348786110602\n            ],\n            [\n              76.11328125,\n              12.039320557540572\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"16","issue":"1","publishingServiceCenter":{"id":2,"text":"Denver PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","scienceBaseUri":"58fb1a4ce4b0c3010a8087bd","contributors":{"authors":[{"text":"Kumar, P.","contributorId":45476,"corporation":false,"usgs":true,"family":"Kumar","given":"P.","affiliations":[],"preferred":false,"id":627678,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Collett, Timothy S. 0000-0002-7598-4708 tcollett@usgs.gov","orcid":"https://orcid.org/0000-0002-7598-4708","contributorId":1698,"corporation":false,"usgs":true,"family":"Collett","given":"Timothy","email":"tcollett@usgs.gov","middleInitial":"S.","affiliations":[{"id":164,"text":"Central Energy Resources Science Center","active":true,"usgs":true},{"id":255,"text":"Energy Resources Program","active":true,"usgs":true},{"id":678,"text":"Woods Hole Coastal and Marine Science Center","active":true,"usgs":true},{"id":171,"text":"Central Mineral and Environmental Resources Science Center","active":true,"usgs":true}],"preferred":true,"id":627677,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Vishwanath, K.","contributorId":168910,"corporation":false,"usgs":false,"family":"Vishwanath","given":"K.","email":"","affiliations":[{"id":25387,"text":"DGH","active":true,"usgs":false}],"preferred":false,"id":627679,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Shukla, K.M.","contributorId":168911,"corporation":false,"usgs":false,"family":"Shukla","given":"K.M.","email":"","affiliations":[{"id":25388,"text":"ONGC","active":true,"usgs":false}],"preferred":false,"id":627680,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Nagalingam, J.","contributorId":168912,"corporation":false,"usgs":false,"family":"Nagalingam","given":"J.","email":"","affiliations":[{"id":25388,"text":"ONGC","active":true,"usgs":false}],"preferred":false,"id":627681,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Lall, M.V.","contributorId":140618,"corporation":false,"usgs":false,"family":"Lall","given":"M.V.","email":"","affiliations":[],"preferred":false,"id":692388,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Yamada, Y","contributorId":168913,"corporation":false,"usgs":false,"family":"Yamada","given":"Y","email":"","affiliations":[{"id":24659,"text":"JAMSTEC, Japan","active":true,"usgs":false}],"preferred":false,"id":627683,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Schultheiss, P.","contributorId":79657,"corporation":false,"usgs":true,"family":"Schultheiss","given":"P.","affiliations":[],"preferred":false,"id":627684,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Holland, M.","contributorId":17380,"corporation":false,"usgs":true,"family":"Holland","given":"M.","email":"","affiliations":[],"preferred":false,"id":627685,"contributorType":{"id":1,"text":"Authors"},"rank":9}]}}
,{"id":70169150,"text":"70169150 - 2016 - Late Neogene deformation of the Chocolate Mountains Anticlinorium: Implications for deposition of the Bouse Formation and early evolution of the Lower Colorado River","interactions":[],"lastModifiedDate":"2017-04-24T10:26:27","indexId":"70169150","displayToPublicDate":"2016-07-14T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Late Neogene deformation of the Chocolate Mountains Anticlinorium: Implications for deposition of the Bouse Formation and early evolution of the Lower Colorado River","docAbstract":"<p>Deformation related to late Neogene dextral shear can explain a shift from an estuarine to lacustrine depositional environment in the southern Bouse Formation north of Yuma, Arizona. We infer that late Neogene deformation in the Chocolate Mountain Anticlinorium (CMA) created a barrier that blocked an estuary inlet, and that pre-existing and possibly active structures subsequently controlled the local course of the lower Colorado River. Structural patterns summarized below suggest that the CMA absorbed transpressional strain caused by left-stepping segments of dextral faults of the San Andreas fault system and/or the eastern California shear zone and Gulf of California shear zone. For this hypothesis to be correct, about 200-250 m of post-6 Ma, pre- ~5.3 Ma uplift along the CMA crest would be required to cut off a marine inlet. The 220-km-long CMA, cored by the early Paleogene Orocopia Schist subduction complex, extends from the Orocopia Mountains (Calif.) southeastward through the Chocolate Mountains (parallel to the southern San Andreas fault). Where Highway 78 crosses the Chocolate Mountains (Fig. 1), the CMA turns eastward through the Black Mountain-Picacho area (Calif.) and Trigo Mountains (Ariz.) into southwest Arizona. It separates southernmost Bouse Formation outcrops of the Blythe basin from subsurface Bouse outcrops to the south in the Yuma area. South of Blythe basin the CMA is transected by the lower Colorado River along a circuitous path. </p><p>Here we focus on the geology of an area between the central Chocolate Mountains and the Yuma Proving Grounds in Arizona. Specific landmarks include the southeast Chocolate Mountains, Midway Mountains, Peter Kane Mountain, Black Mountain, Picacho Peak, and Gavilan Hills. For simplicity, we refer to this as the eastern Chocolate Mountains.</p>","largerWorkType":{"id":24,"text":"Conference Paper"},"largerWorkTitle":"Proceedings for the 2016 Desert Symposium","largerWorkSubtype":{"id":19,"text":"Conference Paper"},"conferenceTitle":"30th Annual Desert Symposium","conferenceDate":"April 15-16, 2016","conferenceLocation":"Zzyzx, CA","language":"English","usgsCitation":"Beard, S., Haxel, G.B., Dorsey, R.J., McDougall, K.A., and Jacobsen, C.E., 2016, Late Neogene deformation of the Chocolate Mountains Anticlinorium: Implications for deposition of the Bouse Formation and early evolution of the Lower Colorado River, <i>in</i> Proceedings for the 2016 Desert Symposium, Zzyzx, CA, April 15-16, 2016, p. 176-184.","productDescription":"9 p.","startPage":"176","endPage":"184","ipdsId":"IP-074252","costCenters":[{"id":312,"text":"Geology, Minerals, Energy, and Geophysics Science Center","active":true,"usgs":true}],"links":[{"id":340155,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"Mexico, United States","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -115.3333,\n              32.4\n            ],\n            [\n              -114,\n              32.4\n            ],\n            [\n              -114,\n              33.6666\n            ],\n            [\n              -115.3333,\n              33.6666\n            ],\n            [\n              -115.3333,\n              32.4\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","publishingServiceCenter":{"id":14,"text":"Menlo Park PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","scienceBaseUri":"58ff0e9ce4b006455f2d61ba","contributors":{"authors":[{"text":"Beard, Sue 0000-0001-9552-1893 sbeard@usgs.gov","orcid":"https://orcid.org/0000-0001-9552-1893","contributorId":167711,"corporation":false,"usgs":true,"family":"Beard","given":"Sue","email":"sbeard@usgs.gov","affiliations":[{"id":312,"text":"Geology, Minerals, Energy, and Geophysics Science Center","active":true,"usgs":true}],"preferred":true,"id":623227,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Haxel, Gordon B. gbhaxel@usgs.gov","contributorId":5666,"corporation":false,"usgs":true,"family":"Haxel","given":"Gordon","email":"gbhaxel@usgs.gov","middleInitial":"B.","affiliations":[{"id":312,"text":"Geology, Minerals, Energy, and Geophysics Science Center","active":true,"usgs":true}],"preferred":true,"id":623228,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Dorsey, Rebecca J.","contributorId":167712,"corporation":false,"usgs":false,"family":"Dorsey","given":"Rebecca","email":"","middleInitial":"J.","affiliations":[{"id":24813,"text":"University of Oregan","active":true,"usgs":false}],"preferred":false,"id":692520,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"McDougall, Kristin A.","contributorId":69146,"corporation":false,"usgs":true,"family":"McDougall","given":"Kristin","email":"","middleInitial":"A.","affiliations":[],"preferred":false,"id":623230,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Jacobsen, Carl E.","contributorId":167713,"corporation":false,"usgs":false,"family":"Jacobsen","given":"Carl","email":"","middleInitial":"E.","affiliations":[{"id":16171,"text":"West Chester University","active":true,"usgs":false}],"preferred":false,"id":623231,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70148408,"text":"70148408 - 2016 - Operational thermal remote sensing and lava flow monitoring at the Hawaiian Volcano Observatory","interactions":[],"lastModifiedDate":"2017-05-15T11:33:18","indexId":"70148408","displayToPublicDate":"2016-07-14T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":5011,"text":"Geological Society of London Special Publications","active":true,"publicationSubtype":{"id":10}},"title":"Operational thermal remote sensing and lava flow monitoring at the Hawaiian Volcano Observatory","docAbstract":"<p><span>Hawaiian volcanoes are highly accessible and well monitored by ground instruments. Nevertheless, observational gaps remain and thermal satellite imagery has proven useful in Hawai‘i for providing synoptic views of activity during intervals between field visits. Here we describe the beginning of a thermal remote sensing programme at the US Geological Survey Hawaiian Volcano Observatory (HVO). Whereas expensive receiving stations have been traditionally required to achieve rapid downloading of satellite data, we exploit free, low-latency data sources on the internet for timely access to GOES, MODIS, ASTER and EO-1 ALI imagery. Automated scripts at the observatory download these data and provide a basic display of the images. Satellite data have been extremely useful for monitoring the ongoing lava flow activity on Kīlauea's East Rift Zone at Pu‘u ‘Ō‘ō over the past few years. A recent lava flow, named Kahauale‘a 2, was upslope from residential subdivisions for over a year. Satellite data helped track the slow advance of the flow and contributed to hazard assessments. Ongoing improvement to thermal remote sensing at HVO incorporates automated hotspot detection, effusion rate estimation and lava flow forecasting, as has been done in Italy. These improvements should be useful for monitoring future activity on Mauna Loa.</span></p>","language":"English","publisher":"Geological Society of London","doi":"10.1144/SP426.17","usgsCitation":"Patrick, M.R., Kauahikaua, J.P., Orr, T., Davies, A., and Ramsey, M.S., 2016, Operational thermal remote sensing and lava flow monitoring at the Hawaiian Volcano Observatory: Geological Society of London Special Publications, v. 426, no. 1, p. 489-503, https://doi.org/10.1144/SP426.17.","productDescription":"15 p.","startPage":"489","endPage":"503","ipdsId":"IP-058010","costCenters":[{"id":617,"text":"Volcano Science Center","active":true,"usgs":true}],"links":[{"id":341307,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United 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Center","active":true,"usgs":true}],"preferred":true,"id":548040,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Orr, Tim R. torr@usgs.gov","contributorId":140376,"corporation":false,"usgs":true,"family":"Orr","given":"Tim R.","email":"torr@usgs.gov","affiliations":[{"id":617,"text":"Volcano Science Center","active":true,"usgs":true}],"preferred":false,"id":548041,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Davies, Ashley G.","contributorId":36827,"corporation":false,"usgs":true,"family":"Davies","given":"Ashley G.","affiliations":[],"preferred":false,"id":548042,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Ramsey, Michael S.","contributorId":58514,"corporation":false,"usgs":true,"family":"Ramsey","given":"Michael","email":"","middleInitial":"S.","affiliations":[],"preferred":false,"id":548043,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70189765,"text":"70189765 - 2016 - Habitat and fish assemblage associations and current status of northern leatherside chub Lepidomeda copei in western Wyoming","interactions":[],"lastModifiedDate":"2017-11-22T17:27:40","indexId":"70189765","displayToPublicDate":"2016-07-14T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3746,"text":"Western North American Naturalist","onlineIssn":"1944-8341","printIssn":"1527-0904","active":true,"publicationSubtype":{"id":10}},"displayTitle":"Habitat and fish assemblage associations and current status of northern leatherside chub <i>Lepidomeda copei</i> in western Wyoming","title":"Habitat and fish assemblage associations and current status of northern leatherside chub Lepidomeda copei in western Wyoming","docAbstract":"<p><span>Human activities have extensively altered native fish assemblages and their habitats in the western United States. Conservation and restoration for long-term persistence of these fishes requires knowledge of their distributional patterns and life history requirements. Northern leatherside chub&nbsp;</span><i>Lepidomeda copei</i><span><span>&nbsp;</span>(hereafter northern leatherside) is a cyprinid native to the Snake and Bear River Basins of Wyoming, Idaho, Nevada, and Utah, and it is believed to have declined in distribution relative to historical records. To address information gaps in the species' ecology and assess its status in the state, the objectives of this study were first to document the distribution (2010–2011) of northern leatherside in Wyoming and then to examine habitat factors related to the entire fish assemblage and to evaluate specific habitat associations of northern leatherside in the Bear River Basin, Wyoming. In the Bear River and Upper Snake River Basins, we documented the distribution of northern leatherside and compared it to the previously known distribution. Across the Bear River Basin, we used habitat measurements to assess abiotic features related to the distribution and abundance of northern leatherside. Northern leatherside was found across the Bear River Basin and was present in 2 streams each in the Upper Snake River and Green River Basins in Wyoming. Populations in Wyoming appear to represent the core of northern leatherside range, and our work provided a finer-scale delineation of the species' occurrence. Northern leatherside was collected from a variety of habitats, but multivariate analyses and occurrence modeling indicated it was associated with increased channel depth and depth variability, and positively associated with other native fishes (including mountain sucker<span>&nbsp;</span></span><i>Catostomus platyrhynchus,</i><span><span>&nbsp;</span>redside shiner<span>&nbsp;</span></span><i>Richardsonius balteatus,</i><span><span>&nbsp;</span>and speckled dace<span>&nbsp;</span></span><i>Rhinichthys osculus).</i><span><span>&nbsp;</span>These findings on the distribution and ecology of northern leatherside provide important new information to assist successful management and conservation efforts within Wyoming and across the species' range.</span></p>","language":"English","publisher":"Monte L. Bean Life Science Museum","doi":"10.3398/064.076.0405","usgsCitation":"Schultz, L., Cavalli, P., Sexauer, H., and Zafft, D., 2016, Habitat and fish assemblage associations and current status of northern leatherside chub Lepidomeda copei in western Wyoming: Western North American Naturalist, v. 76, no. 4, p. 427-440, https://doi.org/10.3398/064.076.0405.","productDescription":"14 p.","startPage":"427","endPage":"440","ipdsId":"IP-071889","costCenters":[{"id":290,"text":"Forest and Rangeland Ecosystem Science Center","active":false,"usgs":true}],"links":[{"id":502593,"rank":0,"type":{"id":41,"text":"Open Access External Repository Page"},"url":"https://scholarsarchive.byu.edu/wnan/vol76/iss4/4","text":"External Repository"},{"id":344267,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Wyoming","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -111.87377929687499,\n              40.9218144123785\n            ],\n            [\n              -109.423828125,\n              40.9218144123785\n            ],\n            [\n              -109.423828125,\n              43.96909818325171\n            ],\n            [\n              -111.87377929687499,\n              43.96909818325171\n            ],\n            [\n              -111.87377929687499,\n              40.9218144123785\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"76","issue":"4","publishingServiceCenter":{"id":12,"text":"Tacoma PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","scienceBaseUri":"5977074fe4b0ec1a48889f74","contributors":{"authors":[{"text":"Schultz, Luke 0000-0002-6751-4626 lschultz@usgs.gov","orcid":"https://orcid.org/0000-0002-6751-4626","contributorId":193171,"corporation":false,"usgs":true,"family":"Schultz","given":"Luke","email":"lschultz@usgs.gov","affiliations":[{"id":289,"text":"Forest and Rangeland Ecosys Science Center","active":true,"usgs":true},{"id":290,"text":"Forest and Rangeland Ecosystem Science Center","active":false,"usgs":true}],"preferred":true,"id":706247,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Cavalli, Pete","contributorId":195095,"corporation":false,"usgs":false,"family":"Cavalli","given":"Pete","email":"","affiliations":[],"preferred":false,"id":706248,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Sexauer, Hilda","contributorId":195096,"corporation":false,"usgs":false,"family":"Sexauer","given":"Hilda","email":"","affiliations":[],"preferred":false,"id":706249,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Zafft, David","contributorId":195097,"corporation":false,"usgs":false,"family":"Zafft","given":"David","email":"","affiliations":[],"preferred":false,"id":706250,"contributorType":{"id":1,"text":"Authors"},"rank":4}]}}
,{"id":70188884,"text":"70188884 - 2016 - The Provo shoreline of Lake Bonneville","interactions":[],"lastModifiedDate":"2020-08-25T17:24:48.558835","indexId":"70188884","displayToPublicDate":"2016-07-14T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"chapter":"7","title":"The Provo shoreline of Lake Bonneville","docAbstract":"<p><span>G.K. Gilbert studied the Bonneville basin 150 years ago and his findings have largely stood the test of time: The Provo shoreline, the most prominent geomorphic feature of Lake Bonneville, reflects threshold-stabilized overflow of the lake after the Bonneville flood and before a drier climate caused the lake to shrink. Subsequent refinements in chronology allow the Provo lake to be identified as about 18.2–14.8</span><span>&nbsp;</span><span>cal</span><span>&nbsp;</span><span>ka BP, and stratigraphic studies show that the lake was gradually growing deeper during that time. Because the lake deepened through time as isostatic rebound occurred, individual landforms in general reflect processes operating for a small part of the ~</span><span>&nbsp;</span><span>3400 year of Provo time. Opportunities remain to improve our knowledge of the Provo lake; topics include (1) refinement of lake levels using delta and beach stratigraphy; (2) improved understanding of lake water chemistry and its role in determining deep-water sediment and cave deposits, which have disparate interpretations; (3) identifying processes at the threshold that caused the lake level to rise; and (4) identifying climate variability signals during Provo time.</span></p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Developments in Earth Surface Processes 20","largerWorkSubtype":{"id":15,"text":"Monograph"},"language":"English","publisher":"Elsevier","publisherLocation":"Amesterdam","doi":"10.1016/B978-0-444-63590-7.00007-X","usgsCitation":"Miller, D., 2016, The Provo shoreline of Lake Bonneville, chap. 7 <i>of</i> Developments in Earth Surface Processes 20, v. 20, p. 127-144, https://doi.org/10.1016/B978-0-444-63590-7.00007-X.","productDescription":"18 p.","startPage":"127","endPage":"144","ipdsId":"IP-070407","costCenters":[{"id":312,"text":"Geology, Minerals, Energy, and Geophysics Science Center","active":true,"usgs":true}],"links":[{"id":342957,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Idaho, Nevada, Utah","otherGeospatial":"Lake Bonneville","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -114.141667,\n              42.041667\n            ],\n            [\n              -111,\n              42.041667\n            ],\n            [\n              -111,\n              37\n            ],\n            [\n              -114.141667,\n              37\n            ],\n            [\n              -114.141667,\n              42.041667\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"20","publishingServiceCenter":{"id":14,"text":"Menlo Park PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","scienceBaseUri":"59536ea7e4b062508e3c7a73","contributors":{"authors":[{"text":"Miller, David M. 0000-0003-3711-0441 dmiller@usgs.gov","orcid":"https://orcid.org/0000-0003-3711-0441","contributorId":140769,"corporation":false,"usgs":true,"family":"Miller","given":"David M.","email":"dmiller@usgs.gov","affiliations":[{"id":309,"text":"Geology and Geophysics Science Center","active":true,"usgs":true},{"id":312,"text":"Geology, Minerals, Energy, and Geophysics Science Center","active":true,"usgs":true}],"preferred":true,"id":700825,"contributorType":{"id":1,"text":"Authors"},"rank":1}]}}
,{"id":70188584,"text":"70188584 - 2016 - Aspects of the reproductive ecology of female turtles in New Mexico","interactions":[],"lastModifiedDate":"2017-06-16T08:47:48","indexId":"70188584","displayToPublicDate":"2016-07-14T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3746,"text":"Western North American Naturalist","onlineIssn":"1944-8341","printIssn":"1527-0904","active":true,"publicationSubtype":{"id":10}},"title":"Aspects of the reproductive ecology of female turtles in New Mexico","docAbstract":"<p><span>Data on reproductive ecology of turtles in New Mexico are limited, and some species living there are among the least studied in the United States. We trapped 4 native species of turtles (</span><i>Apalone spinifera, Chrysemys picta, Pseudemys gorzugi,</i><span> and </span><i>Trachemys gaigeae gaigeae</i><span>) in the Rio Grande and Black River (Pecos River drainage) of New Mexico in June 2012 and 2013 to collect data on female reproductive ecology, including clutch size, egg size, timing of egg production, and percentage of gravid females. During our sampling, we found shelled eggs via X-radiography in only 3 native species: </span><i>C. picta, P. gorzugi,</i><span> and </span><i>T. g. gaigeae.</i><span> Clutch and egg sizes were within the range of previously reported values, although clutch size for </span><i>P. gorzugi</i><span> (10 eggs) is only the second published record for that data-deficient species. Clutch size increased with body size in </span><i>T. g. gaigeae.</i><span> We observed few differences between reproductive parameters for turtles in New Mexico and their conspecifics and congeners elsewhere in the United States, other than the observation that female </span><i>C. picta</i><span> may mature at smaller body sizes in New Mexico relative to other western populations elsewhere in its vast, primarily eastern North American range.</span></p>","language":"English","publisher":"Monte L. Bean Life Science Museum, Brigham Young University","doi":"10.3398/064.076.0306","usgsCitation":"Lovich, J.E., Agha, M., Painter, C., Cole, L., Fitzgerald, A., Narum, K., and Jennings, R., 2016, Aspects of the reproductive ecology of female turtles in New Mexico: Western North American Naturalist, v. 76, no. 3, p. 291-297, https://doi.org/10.3398/064.076.0306.","productDescription":"7 p.","startPage":"291","endPage":"297","ipdsId":"IP-072537","costCenters":[{"id":568,"text":"Southwest Biological Science Center","active":true,"usgs":true}],"links":[{"id":438586,"rank":0,"type":{"id":30,"text":"Data Release"},"url":"https://doi.org/10.5066/F7N014N2","text":"USGS data release","linkHelpText":"Turtle Reproductive Ecology Data, New Mexico, 2012-2013"},{"id":342593,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"New 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,{"id":70189013,"text":"70189013 - 2016 - Identifying sturgeon spawning locations through back-calculations of drift","interactions":[],"lastModifiedDate":"2017-06-29T10:56:23","indexId":"70189013","displayToPublicDate":"2016-07-14T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"title":"Identifying sturgeon spawning locations through back-calculations of drift","docAbstract":"<p>Unfavorable spawning habitat conditions have been identified as a potential limiting factor for recovery of the endangered pallid sturgeon on the Missouri River and its tributaries. After successful spawning, incubation, and hatching, sturgeon free embryos passively drift downstream and are sometimes captured by sampling crews. While spawning habitat has been identified at time of spawning through field investigations, captured pallid and shovelnose (used as a surrogate species) sturgeon free embryos in the Missouri River often do not come from genetically-known telemetered fish and may be useful to identify additional areas of spawning habitat. We developed a routing model to identify potential spawning locations for captured free embryos of known age based on channel velocity estimates. To estimate velocity we compared use of at-a-station hydraulic geometry relations to empirical estimates of velocity form a 15-year archive of hydroacoustic measurements on the Missouri River.</p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"River Flow 2016","largerWorkSubtype":{"id":15,"text":"Monograph"},"language":"English","publisher":"Taylor & Francis Group","publisherLocation":"London","isbn":"978-1-138-02913-2","usgsCitation":"Bulliner, E.A., Erwin, S.O., Jacobson, R.B., Chojnacki, K.A., George, A.E., and Delonay, A.J., 2016, Identifying sturgeon spawning locations through back-calculations of drift, chap. <i>of</i> River Flow 2016, p. 2188-2196.","productDescription":"9 p.","startPage":"2188","endPage":"2196","costCenters":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"links":[{"id":343125,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"noUsgsAuthors":false,"publicationStatus":"PW","scienceBaseUri":"595611b6e4b0d1f9f0506764","contributors":{"authors":[{"text":"Bulliner, Edward A. 0000-0002-2774-9295 ebulliner@usgs.gov","orcid":"https://orcid.org/0000-0002-2774-9295","contributorId":4983,"corporation":false,"usgs":true,"family":"Bulliner","given":"Edward","email":"ebulliner@usgs.gov","middleInitial":"A.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":702414,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Erwin, Susannah O. 0000-0002-2799-0118 serwin@usgs.gov","orcid":"https://orcid.org/0000-0002-2799-0118","contributorId":5183,"corporation":false,"usgs":true,"family":"Erwin","given":"Susannah","email":"serwin@usgs.gov","middleInitial":"O.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":702415,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Jacobson, Robert B. 0000-0002-8368-2064 rjacobson@usgs.gov","orcid":"https://orcid.org/0000-0002-8368-2064","contributorId":1289,"corporation":false,"usgs":true,"family":"Jacobson","given":"Robert","email":"rjacobson@usgs.gov","middleInitial":"B.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":702416,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Chojnacki, Kimberly A. kchojnacki@usgs.gov","contributorId":1978,"corporation":false,"usgs":true,"family":"Chojnacki","given":"Kimberly","email":"kchojnacki@usgs.gov","middleInitial":"A.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":702417,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"George, Amy E. 0000-0003-1150-8646 ageorge@usgs.gov","orcid":"https://orcid.org/0000-0003-1150-8646","contributorId":3950,"corporation":false,"usgs":true,"family":"George","given":"Amy","email":"ageorge@usgs.gov","middleInitial":"E.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":702418,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"DeLonay, Aaron J. 0000-0002-3752-2799 adelonay@usgs.gov","orcid":"https://orcid.org/0000-0002-3752-2799","contributorId":2725,"corporation":false,"usgs":true,"family":"DeLonay","given":"Aaron","email":"adelonay@usgs.gov","middleInitial":"J.","affiliations":[{"id":192,"text":"Columbia Environmental Research Center","active":true,"usgs":true}],"preferred":true,"id":702419,"contributorType":{"id":1,"text":"Authors"},"rank":6}]}}
,{"id":70174407,"text":"ofr20161102 - 2016 - Report from the workshop on climate downscaling and its application in high Hawaiian Islands, September 16–17, 2015","interactions":[],"lastModifiedDate":"2020-12-10T16:00:20.333769","indexId":"ofr20161102","displayToPublicDate":"2016-07-14T00:00:00","publicationYear":"2016","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":5,"text":"USGS Numbered Series"},"seriesTitle":{"id":330,"text":"Open-File Report","code":"OFR","onlineIssn":"2331-1258","printIssn":"0196-1497","active":true,"publicationSubtype":{"id":5}},"seriesNumber":"2016-1102","title":"Report from the workshop on climate downscaling and its application in high Hawaiian Islands, September 16–17, 2015","docAbstract":"<p>In the subtropical and tropical Pacific islands, changing climate is predicted to influence precipitation and freshwater availability, and thus is predicted to impact ecosystems goods and services available to ecosystems and human communities. The small size of high Hawaiian Islands, plus their complex microlandscapes, require downscaling of global climate models to provide future projections of greater skill and spatial resolution. Two different climate modeling approaches (physics-based dynamical downscaling and statistics-based downscaling) have produced dissimilar projections. Because of these disparities, natural resource managers and decision makers have low confidence in using the modeling results and are therefore are unwilling to include climate-related projections in their decisions. In September 2015, the Pacific Islands Climate Science Center (PICSC), the Pacific Islands Climate Change Cooperative (PICCC), and the Pacific Regional Integrated Sciences and Assessments (Pacific RISA) program convened a 2-day facilitated workshop in which the two modeling teams, plus key model users and resource managers, were brought together for a comparison of the two approaches, culminating with a discussion of how to provide predictions that are useable by resource managers. The proceedings, discussions, and outcomes of this Workshop are summarized in this Open-File Report.</p>","language":"English","publisher":"U.S. Geological Survey","publisherLocation":"Reston, VA","doi":"10.3133/ofr20161102","usgsCitation":"Helweg, D.A., Keener, V., and Burgett, J.M., 2016, Report from the workshop on climate downscaling and its application in high Hawaiian Islands, September 16–17, 2015: U.S. Geological Survey Open-File Report 2016–1102, 25 p., https://dx.doi.org/10.3133/ofr20161102.","productDescription":"Report: ix, 38 p. Appendixes: 1-8","onlineOnly":"Y","additionalOnlineFiles":"N","ipdsId":"IP-073280","costCenters":[{"id":522,"text":"Pacific Islands Climate Science Center","active":true,"usgs":true}],"links":[{"id":325052,"rank":9,"type":{"id":3,"text":"Appendix"},"url":"https://pubs.usgs.gov/of/2016/1102/ofr20161102_appendix7_giardina_mansker_presentation.pdf","text":"Appendix 7. “Drought and Fire in Hawaiʻi and the US Affiliated Pacific Islands” by Christian Giardina and Michelle Mansker","size":"17.1 MB","linkFileType":{"id":1,"text":"pdf"},"description":"OFR 2016-1102 Appendix 7"},{"id":325051,"rank":8,"type":{"id":3,"text":"Appendix"},"url":"https://pubs.usgs.gov/of/2016/1102/ofr20161102_appendix6_mair_presentation.pdf","text":"Appendix 6. Appendix 6. “Estimating Climate-Change Impacts on Groundwater Recharge for the Island of Maui, Hawaiʻi” by Alan Mair","size":"2.6 MB","linkFileType":{"id":1,"text":"pdf"},"description":"OFR 2016-1102 Appendix 6"},{"id":325050,"rank":7,"type":{"id":3,"text":"Appendix"},"url":"https://pubs.usgs.gov/of/2016/1102/ofr20161102_appendix5_ohye_presentation.pdf","text":"Appendix 5. “The Climate Change Conundrum: A Water Resource Management Perspective” by Lenore Ohye","size":"3.3 MB","linkFileType":{"id":1,"text":"pdf"},"description":"OFR 2016-1102 Appendix 5"},{"id":325049,"rank":6,"type":{"id":3,"text":"Appendix"},"url":"https://pubs.usgs.gov/of/2016/1102/ofr20161102_appendix4_wang_presentation.pdf","text":"Appendix 4. “Dynamical Downscaling” by Yuqing Wang","size":"12.2 MB","linkFileType":{"id":1,"text":"pdf"},"description":"OFR 2016-1102 Appendix 4"},{"id":325048,"rank":5,"type":{"id":3,"text":"Appendix"},"url":"https://pubs.usgs.gov/of/2016/1102/ofr20161102_appendix3_timm_presentation.pdf","text":"Appendix 3. “Presentation on Statistical Downscaling” by Oliver Elison Timm","size":"2.1 MB","linkFileType":{"id":1,"text":"pdf"},"description":"OFR 2016-1102 Appendix 3"},{"id":325047,"rank":4,"type":{"id":3,"text":"Appendix"},"url":"https://pubs.usgs.gov/of/2016/1102/ofr20161102_appendix2_risa_resource_matrix.xlsx","text":"Appendix 2. “Island Downscaling Resources Matrix” model descriptions","size":"44 KB","linkFileType":{"id":3,"text":"xlsx"},"description":"OFR 2016-1102 Appendix 2"},{"id":325046,"rank":3,"type":{"id":3,"text":"Appendix"},"url":"https://pubs.usgs.gov/of/2016/1102/ofr20161102_appendix1_keener_survey_results.pdf","text":"Appendix 1. “Review of RISA Survey: Insights Learned Through Using Downscaled Climate Products” by Victoria Keener","size":"5.7 MB","linkFileType":{"id":1,"text":"pdf"},"description":"OFR 2016-1102 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 \"}}]}","contact":"<p><a href=\"mailto:dhelweg@usgs.gov\">David A. Helweg</a>, Director<br />Department of the Interior Pacific Islands Climate Science Center<br /> U.S. Geological Survey Climate and Land Use Mission Area<br /> <a href=\"https://www.doi.gov/csc/pacific\" target=\"blank\">https://www.doi.gov/csc/pacific</a></p>","tableOfContents":"<ul>\n<li>Preface</li>\n<li>Acknowledgments</li>\n<li>Contents</li>\n<li>Executive Summary</li>\n<li>Introduction</li>\n<li>Pre-Workshop Survey: Perceptions of Climate Needs and Downscaling Data by Modelers and Resource Managers in Hawaiʻi</li>\n<li>Structured Discussion I: Commonalities</li>\n<li>Structured Discussion II: Best Science Practices, I</li>\n<li>Structured Discussion III: Applications of Current Products</li>\n<li>Structured Discussion IV: Best Science Practices, II</li>\n<li>Wrap-Up: Downscaling Working Group</li>\n<li>Selected References</li>\n<li>Appendixes 1&ndash;8</li>\n</ul>","publishedDate":"2016-07-14","noUsgsAuthors":false,"publicationDate":"2016-07-14","publicationStatus":"PW","scienceBaseUri":"5788a99ce4b0d27deb3813ce","contributors":{"authors":[{"text":"Helweg, David A.","contributorId":172806,"corporation":false,"usgs":true,"family":"Helweg","given":"David","email":"","middleInitial":"A.","affiliations":[],"preferred":false,"id":642139,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Keener, Victoria","contributorId":20620,"corporation":false,"usgs":true,"family":"Keener","given":"Victoria","affiliations":[],"preferred":false,"id":642140,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Burgett, Jeff M.","contributorId":172807,"corporation":false,"usgs":true,"family":"Burgett","given":"Jeff","email":"","middleInitial":"M.","affiliations":[],"preferred":false,"id":642141,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
]}