{"pageNumber":"796","pageRowStart":"19875","pageSize":"25","recordCount":184617,"records":[{"id":70162622,"text":"70162622 - 2018 - Historical and projected climate in the northern Rockies Region","interactions":[],"lastModifiedDate":"2020-12-08T21:28:18.689974","indexId":"70162622","displayToPublicDate":"2018-12-31T15:23:26","publicationYear":"2018","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"chapter":"3","title":"Historical and projected climate in the northern Rockies Region","docAbstract":"<p>Climate influences the ecosystem services we obtain from forest and rangelands. Climate is described by the long-term characteristics of precipitation, temperature, wind, snowfall, and other measures of weather that occur over a long period in a particular place, and is typically expressed as long-term average conditions. Resource management practices are implemented day-to-day in response to weather conditions; resource management strategies and plans are developed using our understanding of climate. With the need to consider climate change in planning and management, an understanding of how climate may change in the future in a resource management planning area is valuable. In this chapter, we present the current understanding of potential changes in climate for the Forest Service, U.S. Department of Agriculture (USFS) Northern Region and the Greater Yellowstone Area (GYA), hereafter called the Northern Rockies region.</p>","largerWorkType":{"id":18,"text":"Report"},"largerWorkTitle":"Climate change vulnerability and adaptation in the Northern Rocky Mountains [Part 1]. Gen. Tech. Rep. RMRS-GTR-374","largerWorkSubtype":{"id":1,"text":"Federal Government Series"},"language":"English","publisher":"U.S Department of Agriculture","usgsCitation":"Joyce, L.A., Talbert, M., Sharp, D., Morisette, J.T., and Stevenson, J.J., 2018, Historical and projected climate in the northern Rockies Region, chap. 3 <i>of</i> Climate change vulnerability and adaptation in the Northern Rocky Mountains [Part 1]. Gen. Tech. Rep. RMRS-GTR-374, p. 28-47.","productDescription":"20 p.","startPage":"28","endPage":"47","ipdsId":"IP-070260","costCenters":[{"id":477,"text":"North Central Climate Science Center","active":true,"usgs":true},{"id":40927,"text":"North Central Climate Adaptation Science Center","active":true,"usgs":true}],"links":[{"id":381140,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":381139,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://www.fs.usda.gov/treesearch/pubs/55988"}],"country":"United States","state":"Idaho, Montana, Wyoming","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -116.71874999999999,\n              42.032974332441405\n            ],\n            [\n              -104.58984375,\n              42.032974332441405\n            ],\n            [\n              -104.58984375,\n              48.922499263758255\n            ],\n            [\n              -116.71874999999999,\n              48.922499263758255\n            ],\n            [\n              -116.71874999999999,\n              42.032974332441405\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","publishingServiceCenter":{"id":2,"text":"Denver PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Joyce, Linda A.","contributorId":152615,"corporation":false,"usgs":false,"family":"Joyce","given":"Linda","email":"","middleInitial":"A.","affiliations":[{"id":6684,"text":"USDA Forest Service, Southern Research Station, Aiken, SC","active":true,"usgs":false}],"preferred":false,"id":589927,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Talbert, Marian 0000-0003-0588-0265 mtalbert@usgs.gov","orcid":"https://orcid.org/0000-0003-0588-0265","contributorId":191730,"corporation":false,"usgs":true,"family":"Talbert","given":"Marian","email":"mtalbert@usgs.gov","affiliations":[{"id":477,"text":"North Central Climate Science Center","active":true,"usgs":true}],"preferred":false,"id":589926,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Sharp, Darrin","contributorId":152616,"corporation":false,"usgs":false,"family":"Sharp","given":"Darrin","email":"","affiliations":[{"id":6680,"text":"Oregon State University","active":true,"usgs":false}],"preferred":false,"id":589928,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Morisette, Jeffrey T. 0000-0002-0483-0082 morisettej@usgs.gov","orcid":"https://orcid.org/0000-0002-0483-0082","contributorId":307,"corporation":false,"usgs":true,"family":"Morisette","given":"Jeffrey","email":"morisettej@usgs.gov","middleInitial":"T.","affiliations":[{"id":569,"text":"Southwest Climate Science Center","active":true,"usgs":true},{"id":477,"text":"North Central Climate Science Center","active":true,"usgs":true}],"preferred":true,"id":589929,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Stevenson, John J.","contributorId":70633,"corporation":false,"usgs":true,"family":"Stevenson","given":"John","email":"","middleInitial":"J.","affiliations":[],"preferred":false,"id":589930,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70208421,"text":"70208421 - 2018 - Damage accumulation for a two-story wood-frame building in sequences of induced earthquakes","interactions":[],"lastModifiedDate":"2020-03-05T15:17:45","indexId":"70208421","displayToPublicDate":"2018-12-31T15:12:10","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Damage accumulation for a two-story wood-frame building in sequences of induced earthquakes","docAbstract":"<p>In this study, a nonlinear model of a two-story multifamily wood-frame residential structure is subjected to recordings of sequences of induced earthquakes in order to quantify changes in fragility and accumulation of damage throughout multiple earthquake loadings. Initial efforts consisting of ground motion selection, building design, numerical modeling, and preliminary results are presented. Damage is quantified through a seismic loss estimation procedure that accounts for damage to nonstructural and structural components of the building. Examining damage accumulation from sequential earthquake shaking enables us to explore how the occurrence of damage in an earthquake, even to relatively small levels, may increase a structure’s susceptibility to collapse or damage in subsequent ground shaking. Ultimately, the goal is to compare damage fragilities and seismic losses as a function of the building’s initial damage state.</p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Proceedings of the 11th National Conference in Earthquake Engineering","largerWorkSubtype":{"id":12,"text":"Conference publication"},"conferenceTitle":"Eleventh U.S. National Conference on Earthquake Engineering","conferenceDate":"Jun 25-29, 2018","conferenceLocation":"Los Angeles, CA","language":"English","publisher":"Earthquake Engineering Research Institute","usgsCitation":"Chase, R., Liel, A., and Luco, N., 2018, Damage accumulation for a two-story wood-frame building in sequences of induced earthquakes, <i>in</i> Proceedings of the 11th National Conference in Earthquake Engineering, Los Angeles, CA, Jun 25-29, 2018, 4 p.","productDescription":"4 p.","ipdsId":"IP-096752","costCenters":[{"id":300,"text":"Geologic Hazards Science Center","active":true,"usgs":true}],"links":[{"id":372959,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":372154,"type":{"id":15,"text":"Index Page"},"url":"https://11ncee.org/"}],"country":"United States","state":"Kansas, Oklahoma","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -99.140625,\n              33.4955977448657\n            ],\n            [\n              -94.6142578125,\n              33.4955977448657\n            ],\n            [\n              -94.6142578125,\n              37.94419750075404\n            ],\n            [\n              -99.140625,\n              37.94419750075404\n            ],\n            [\n              -99.140625,\n              33.4955977448657\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","publishingServiceCenter":{"id":2,"text":"Denver PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Chase, R","contributorId":222295,"corporation":false,"usgs":false,"family":"Chase","given":"R","email":"","affiliations":[{"id":36621,"text":"University of Colorado","active":true,"usgs":false}],"preferred":false,"id":781815,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Liel, A.B.","contributorId":175201,"corporation":false,"usgs":false,"family":"Liel","given":"A.B.","affiliations":[],"preferred":false,"id":781816,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Luco, Nico 0000-0002-5763-9847 nluco@usgs.gov","orcid":"https://orcid.org/0000-0002-5763-9847","contributorId":145730,"corporation":false,"usgs":true,"family":"Luco","given":"Nico","email":"nluco@usgs.gov","affiliations":[{"id":300,"text":"Geologic Hazards Science Center","active":true,"usgs":true}],"preferred":true,"id":781817,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70198123,"text":"70198123 - 2018 - Revisiting the Apollo photogrammetric mapping system","interactions":[],"lastModifiedDate":"2019-06-26T15:21:37","indexId":"70198123","displayToPublicDate":"2018-12-31T15:10:46","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Revisiting the Apollo photogrammetric mapping system","docAbstract":"The integrated photogrammetric mapping system flown on the last three Apollo lunar missions (15, 16, and 17) in 1971 and 1972 incorporated a Metric (mapping) Camera, a high-resolution Panoramic Camera, and a star camera and laser altimeter to provide support data. The U.S. Geological Survey’s Astrogeology Science Center, the Intelligent Robotics Group of the NASA Ames Research Center, and Arizona State University are working together in an ongoing collaboration to achieve the most complete cartographic development of Apollo mapping system data into versatile digital map products. These will enable a variety of scientific/engineering uses of the data including mission planning, geologic mapping, geophysical process modelling, slope dependent correction of spectral data, and change detection. After a brief discussion of the origins of the mapping system, we describe the Metric and Panoramic cameras, processing of the associated image and support data, work to photogrammetrically control the Metric Camera images, and future plans.","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences","largerWorkSubtype":{"id":12,"text":"Conference publication"},"conferenceTitle":"ISPRS Technical Commission I Symposium, \"Innovative Sensing - From Sensors to Methods and Applications,","conferenceDate":"10-12 October 2018","conferenceLocation":"Karlsruhe, Germany","language":"English","publisher":"ISPRS","doi":"10.5194/isprs-archives-XLII-1-133-2018","usgsCitation":"Edmundson, K., Alexandrov, O., Archinal, B., Becker, K., Becker, T.L., Mapel, J., Moratto, Z.M., Nefian, A.V., Richie, J., Robinson, M.S., Shepherd, M., Shinaman, J., and Smith, E., 2018, Revisiting the Apollo photogrammetric mapping system, <i>in</i> International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, v. 42, no. 1, Karlsruhe, Germany, 10-12 October 2018, p. 133-140, https://doi.org/10.5194/isprs-archives-XLII-1-133-2018.","productDescription":"8 p.","startPage":"133","endPage":"140","ipdsId":"IP-099481","costCenters":[{"id":131,"text":"Astrogeology Science Center","active":true,"usgs":true}],"links":[{"id":468168,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.5194/isprs-archives-xlii-1-133-2018","text":"Publisher Index Page"},{"id":365089,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"otherGeospatial":"Moon","volume":"42","issue":"1","publishingServiceCenter":{"id":14,"text":"Menlo Park PSC"},"noUsgsAuthors":false,"publicationDate":"2018-09-26","publicationStatus":"PW","contributors":{"authors":[{"text":"Edmundson, Kenneth 0000-0003-3666-0927 kedmundson@usgs.gov","orcid":"https://orcid.org/0000-0003-3666-0927","contributorId":206340,"corporation":false,"usgs":true,"family":"Edmundson","given":"Kenneth","email":"kedmundson@usgs.gov","affiliations":[{"id":131,"text":"Astrogeology Science Center","active":true,"usgs":true}],"preferred":true,"id":740111,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Alexandrov, Oleg","contributorId":167662,"corporation":false,"usgs":false,"family":"Alexandrov","given":"Oleg","email":"","affiliations":[{"id":24796,"text":"NASA Ames Research Center","active":true,"usgs":false}],"preferred":false,"id":740112,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Archinal, Brent A. 0000-0002-6654-0742","orcid":"https://orcid.org/0000-0002-6654-0742","contributorId":206341,"corporation":false,"usgs":true,"family":"Archinal","given":"Brent A.","affiliations":[{"id":131,"text":"Astrogeology Science 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0000-0001-5756-0373","orcid":"https://orcid.org/0000-0001-5756-0373","contributorId":206344,"corporation":false,"usgs":true,"family":"Mapel","given":"Jesse","email":"","affiliations":[{"id":131,"text":"Astrogeology Science Center","active":true,"usgs":true}],"preferred":true,"id":740116,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Moratto, Zachary M.","contributorId":206345,"corporation":false,"usgs":false,"family":"Moratto","given":"Zachary","email":"","middleInitial":"M.","affiliations":[{"id":37314,"text":"Google Inc.","active":true,"usgs":false}],"preferred":false,"id":740117,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Nefian, Ara V.","contributorId":206346,"corporation":false,"usgs":false,"family":"Nefian","given":"Ara","email":"","middleInitial":"V.","affiliations":[{"id":24796,"text":"NASA Ames Research Center","active":true,"usgs":false}],"preferred":false,"id":740118,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Richie, Janet 0000-0003-4151-1010","orcid":"https://orcid.org/0000-0003-4151-1010","contributorId":206347,"corporation":false,"usgs":true,"family":"Richie","given":"Janet","email":"","affiliations":[{"id":131,"text":"Astrogeology Science Center","active":true,"usgs":true}],"preferred":true,"id":740119,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Robinson, Mark S.","contributorId":167665,"corporation":false,"usgs":false,"family":"Robinson","given":"Mark","email":"","middleInitial":"S.","affiliations":[{"id":6607,"text":"Arizona State University","active":true,"usgs":false}],"preferred":false,"id":740120,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Shepherd, Makayla 0000-0002-4101-9977","orcid":"https://orcid.org/0000-0002-4101-9977","contributorId":206191,"corporation":false,"usgs":true,"family":"Shepherd","given":"Makayla","email":"","affiliations":[{"id":131,"text":"Astrogeology Science Center","active":true,"usgs":true}],"preferred":true,"id":740121,"contributorType":{"id":1,"text":"Authors"},"rank":11},{"text":"Shinaman, John 0000-0002-5788-8210","orcid":"https://orcid.org/0000-0002-5788-8210","contributorId":206348,"corporation":false,"usgs":true,"family":"Shinaman","given":"John","email":"","affiliations":[{"id":131,"text":"Astrogeology Science Center","active":true,"usgs":true}],"preferred":true,"id":740122,"contributorType":{"id":1,"text":"Authors"},"rank":12},{"text":"Smith, Ethan 0000-0003-3896-326X","orcid":"https://orcid.org/0000-0003-3896-326X","contributorId":206349,"corporation":false,"usgs":true,"family":"Smith","given":"Ethan","email":"","affiliations":[{"id":131,"text":"Astrogeology Science Center","active":true,"usgs":true}],"preferred":true,"id":740123,"contributorType":{"id":1,"text":"Authors"},"rank":13}]}}
,{"id":70198106,"text":"70198106 - 2018 - Multiphase hydromechanical iTOUGH2-EOS7C modeling study of underpressure development in shale during glacial loading cycles at the Bruce Nuclear Site, Ontario, Canada","interactions":[],"lastModifiedDate":"2019-06-27T15:03:50","indexId":"70198106","displayToPublicDate":"2018-12-31T14:55:22","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Multiphase hydromechanical iTOUGH2-EOS7C modeling study of underpressure development in shale during glacial loading cycles at the Bruce Nuclear Site, Ontario, Canada","docAbstract":"A deep geologic repository (DGR) for low- and intermediate-level radioactive waste has been proposed at the Bruce nuclear site on the eastern flank of the Michigan Basin in southeastern Ontario, Canada. The repository would be placed at a depth of ~680 m, within a ~450 m-thick sequence of geologic media with extremely low porosity and permeability. The water in this section is significantly underpressured, which previous modeling work has shown could be the result of hydromechanical coupling during geologically recent glacial cycles. However, questions have been raised about whether gas phase methane is present in situ, and if so, how it relates to the generation and persistence of the underpressure here, as well as those in numerous other shale- and gas-rich sedimentary basins around the world. The primary goal of this study is to investigate, using the hydromechanical multiphase flow simulator iTOUGH2-EOS7C, what impact separate phase methane may have on coupled hydromechanical processes during glacial cycles. This was done by observing pressure evolution in a one-dimensional iTOUGH2-EOS7C model designed as a simplified representation of the Bruce site and its geologically recent history. Results indicate that, although gas phase generally dampens pressure changes in response to glacial loading, a similar underpressure to the one observed at the Bruce site could feasibly occur in a multiphase system.","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Proceedings of the TOUGH Symposium 2018","largerWorkSubtype":{"id":12,"text":"Conference publication"},"conferenceTitle":"TOUGH Symposium 2018","conferenceDate":"October 8-10, 2018","conferenceLocation":"Berkeley, CA","language":"English","publisher":"Lawrence Berkeley National Laboratory","usgsCitation":"Plampin, M.R., 2018, Multiphase hydromechanical iTOUGH2-EOS7C modeling study of underpressure development in shale during glacial loading cycles at the Bruce Nuclear Site, Ontario, Canada, <i>in</i> Proceedings of the TOUGH Symposium 2018, Berkeley, CA, October 8-10, 2018, p. 314-318.","productDescription":"5 p.","startPage":"314","endPage":"318","ipdsId":"IP-099019","costCenters":[{"id":436,"text":"National Research Program - Eastern Branch","active":true,"usgs":true}],"links":[{"id":365125,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":365124,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://eesa.lbl.gov/2018-tough-symposium/"}],"country":"Canada","state":"Ontario","county":"Bruce County","otherGeospatial":"Bruce Nuclear Site","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -81.59717559814453,\n              44.30849520311096\n            ],\n            [\n              -81.56490325927734,\n              44.30849520311096\n            ],\n            [\n              -81.56490325927734,\n              44.33133881434939\n            ],\n            [\n              -81.59717559814453,\n              44.33133881434939\n            ],\n            [\n              -81.59717559814453,\n              44.30849520311096\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","publishingServiceCenter":{"id":9,"text":"Reston PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Plampin, Michelle R. 0000-0003-4068-5801 mplampin@usgs.gov","orcid":"https://orcid.org/0000-0003-4068-5801","contributorId":204983,"corporation":false,"usgs":true,"family":"Plampin","given":"Michelle","email":"mplampin@usgs.gov","middleInitial":"R.","affiliations":[{"id":49175,"text":"Geology, Energy & Minerals Science Center","active":true,"usgs":true}],"preferred":true,"id":740039,"contributorType":{"id":1,"text":"Authors"},"rank":1}]}}
,{"id":70198585,"text":"70198585 - 2018 - Streams do work: Measuring the work of low-order streams on the landscape using point clouds","interactions":[],"lastModifiedDate":"2019-06-26T14:56:53","indexId":"70198585","displayToPublicDate":"2018-12-31T14:42:02","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Streams do work: Measuring the work of low-order streams on the landscape using point clouds","docAbstract":"The mutable nature of low-order streams makes regular updating of surface water maps necessary for accurate representation. Low-order streams make up roughly half the streams in the conterminous United States by length, and small inaccuracies in stream head location can result in significant error in stream reach, order, and density. Reliable maps of stream features are vital for hydrologic modeling, ecosystem research, and boundary monitoring. High resolution digital elevation models derived from lidar data have shown promise in low order stream modeling yet forested high relief landscapes and low relief agricultural areas remain challenging. Here we present early results from research analyzing lidar point clouds to identify features and patterns that may be used in low-order stream identification and classification in challenging geographic conditions. This work has identified characteristics derived from point clouds that correlate with the presence of streams and stream heads and show promise for mapping small streams. In low topographic relief agricultural areas, cross sections collected at regular intervals along drainage channels extracted as 3D lines show a significant jump in value and variance of profile curvature standard deviation at stream heads. In high relief areas, observations show potential for stream mapping by identifying trends in riparian zone structure. Lidar return point density from riparian vegetation under 30 feet tall dips in the vicinity of intermittent stream heads. Also seen is an increase in point density above 60 feet downstream of stream heads. The trends found here likely reflect a change in vegetation structure relative to the presence of streams.","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences - ISPRS Archives","largerWorkSubtype":{"id":12,"text":"Conference publication"},"conferenceTitle":"ISPRS TC IV Mid-term Symposium “3D Spatial Information Science – The Engine of Change”","conferenceDate":"1-5 October 2018","conferenceLocation":"Delft, the Netherlands","language":"English","publisher":"ISPRS","doi":"10.5194/isprs-archives-XLII-4-573-2018","usgsCitation":"Shavers, E.J., and Stanislawski, L.V., 2018, Streams do work: Measuring the work of low-order streams on the landscape using point clouds, <i>in</i> International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences - ISPRS Archives, v. 42, no. 4, Delft, the Netherlands, 1-5 October 2018, p. 573-578, https://doi.org/10.5194/isprs-archives-XLII-4-573-2018.","productDescription":"6 p.","startPage":"573","endPage":"578","ipdsId":"IP-099680","costCenters":[{"id":5074,"text":"Center for Geospatial Information Science (CEGIS)","active":true,"usgs":true}],"links":[{"id":468169,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.5194/isprs-archives-xlii-4-573-2018","text":"Publisher Index Page"},{"id":365087,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Illinois, Iowa, North Carolina","volume":"42","issue":"4","publishingServiceCenter":{"id":15,"text":"Madison PSC"},"noUsgsAuthors":false,"publicationDate":"2018-09-19","publicationStatus":"PW","contributors":{"authors":[{"text":"Shavers, Ethan J. 0000-0001-9470-5199 eshavers@usgs.gov","orcid":"https://orcid.org/0000-0001-9470-5199","contributorId":206890,"corporation":false,"usgs":true,"family":"Shavers","given":"Ethan","email":"eshavers@usgs.gov","middleInitial":"J.","affiliations":[{"id":5074,"text":"Center for Geospatial Information Science (CEGIS)","active":true,"usgs":true}],"preferred":true,"id":742040,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Stanislawski, Larry V. 0000-0002-9437-0576 lstan@usgs.gov","orcid":"https://orcid.org/0000-0002-9437-0576","contributorId":3386,"corporation":false,"usgs":true,"family":"Stanislawski","given":"Larry","email":"lstan@usgs.gov","middleInitial":"V.","affiliations":[{"id":404,"text":"NGTOC Rolla","active":true,"usgs":true},{"id":5074,"text":"Center for Geospatial Information Science (CEGIS)","active":true,"usgs":true}],"preferred":true,"id":742041,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70203776,"text":"70203776 - 2018 - Describing the distribution and productivity of biota along a nearshore to offshore gradient","interactions":[],"lastModifiedDate":"2020-06-01T11:39:46.467568","indexId":"70203776","displayToPublicDate":"2018-12-31T14:27:34","publicationYear":"2018","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":9,"text":"Other Report"},"title":"Describing the distribution and productivity of biota along a nearshore to offshore gradient","docAbstract":"<p>The Lake Michigan Lakewide Action and Management Plan (LAMP) proposed adding nutrients (phosphorus) to its “pollutant of concern” list in 2002, given that excessive nutrients were causing impairments in nearshore waters. Since that time, scientists have highlighted the “shunting” of nutrients to the nearshore (Hecky et al. 2004), owing to the ability of invasive dreissenid mussels to capture some portion of allochthonous phosphorus that enters the lake through tributaries. These changes are believed to increase productivity in the nearshore, reflected in increased benthic and pelagic primary production and nuisance <i>Cladophora</i> (Auer et al. 2010). Whether increases in primary productivity lead to concomitant increases for secondary (by zooplankton) and tertiary (by fish) production remains largely untested. Hence, understanding the distribution and abundance of nutrients and biota (e.g., zooplankton, fish) across a nearshore to offshore gradient was identified as a Cooperative Science and Monitoring Initiative (CSMI) priority in 2015. Increased understanding of the Lake Michigan nearshore will also facilitate the development of a Nearshore Strategy by the LAMP, which is called for in the 2012 Great Lakes Water Quality Agreement. </p><p>Working collaboratively with Environmental Protection Agency (EPA) and National Oceanic and Atmospheric Administration (NOAA), United States Geological Survey (USGS) described the distribution of nutrients and biota across nearshore to offshore transects in 2015 (see Appendix 1). At each transect, we sampled the food web at three sites with differing bottom depths: 18 m, 46 m, and 91-110 m. We purposefully chose transects near tributaries of varying total phosphorus (TP) input (see Figure 1, Dolan and Chapra 2012): three transects that were not associated with any large tributary where total phosphorus would be loaded (Waukegan IL, Frankfort MI, Sturgeon Bay WI), three transects adjacent to tributaries presumed to be relatively low loaders of TP (Pere Marquette MI, Root WI, Muskegon MI), and three transects adjacent to tributaries presumed to be relatively high loaders of TP (St. Joseph MI, Kalamazoo MI, Manitowoc WI). USGS estimated chlorophyll concentrations, zooplankton, <i>Mysis</i>, larval fish, and juvenile and adult fish seasonally (April/May, July, October/November) at eight of these transects (all but Muskegon).&nbsp;</p>","largerWorkType":{"id":18,"text":"Report"},"largerWorkTitle":"Cooperative science and monitoring initiative (CSMI) Lake Michigan 2015 report","largerWorkSubtype":{"id":9,"text":"Other Report"},"language":"English","publisher":"Illinois-Indiana Sea Grant","usgsCitation":"Bunnell, D.B., Dieter, P.M., Warner, D.M., Eaton, L.A., and Eppehimer, D., 2018, Describing the distribution and productivity of biota along a nearshore to offshore gradient, 15 p.","productDescription":"15 p.","startPage":"1","endPage":"15","ipdsId":"IP-097376","costCenters":[{"id":324,"text":"Great Lakes Science 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Science Center","active":true,"usgs":true}],"preferred":true,"id":764082,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Dieter, Patricia M. 0000-0003-1686-2679 parmenio@usgs.gov","orcid":"https://orcid.org/0000-0003-1686-2679","contributorId":5289,"corporation":false,"usgs":true,"family":"Dieter","given":"Patricia","email":"parmenio@usgs.gov","middleInitial":"M.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":764083,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Warner, David M. 0000-0003-4939-5368 dmwarner@usgs.gov","orcid":"https://orcid.org/0000-0003-4939-5368","contributorId":2986,"corporation":false,"usgs":true,"family":"Warner","given":"David","email":"dmwarner@usgs.gov","middleInitial":"M.","affiliations":[{"id":324,"text":"Great Lakes Science Center","active":true,"usgs":true}],"preferred":true,"id":764084,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Eaton, Lauren A.","contributorId":211815,"corporation":false,"usgs":false,"family":"Eaton","given":"Lauren","email":"","middleInitial":"A.","affiliations":[],"preferred":false,"id":764085,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Eppehimer, Drew","contributorId":216176,"corporation":false,"usgs":false,"family":"Eppehimer","given":"Drew","affiliations":[{"id":7042,"text":"University of Arizona","active":true,"usgs":false}],"preferred":false,"id":764086,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70200372,"text":"70200372 - 2018 - Population trends of birds wintering in the Central Valley of California","interactions":[],"lastModifiedDate":"2019-06-26T14:25:20","indexId":"70200372","displayToPublicDate":"2018-12-31T14:24:41","publicationYear":"2018","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"title":"Population trends of birds wintering in the Central Valley of California","docAbstract":"<p>Since the 1970s, the Central Valley of California has seen a large investment in preservation and restoration of wetlands and riparian areas. At the same time, grasslands have been lost to vineyards, orchards, and residential development at an accelerating rate. We analyzed data from 17 Christmas Bird Count circles that were surveyed regularly between winter 1978–79 and winter 2013–14 to document population trends for birds wintering in this region. We selected 112 taxa (species or species groups) that were relatively abundant and widespread in the Central Valley during winter and used a hierarchical model to estimate annual rates of population change from the count data while accounting for varying survey effort. A much larger proportion of taxa showed positive (46%) than negative (18%) trends; about a third (36%) showed no detectable change. Central Valley habitats that showed the highest proportion of taxa with increasing vs. decreasing trends were riparian (59% vs. 9%; n = 32), wetlands (49% vs. 11%; n = 47), and open water (44% vs. 0%; n = 9), likely reflecting the conservation efforts in these habitats in recent decades. In contrast, a greater proportion of the taxa associated with grasslands and other open habitats (n = 25) showed decreases (48%) than increases (28%). As expected, species that adapt well to areas of human habitation showed stable or increasing trends. Examples of such species with strong positive trends include Anna's Hummingbird (<i>Calypte anna</i>), Black Phoebe (<i>Sayornis nigricans</i>) and recent Central Valley arrivals, Eurasian Collared-Dove (<i>Streptopelia decaocto</i>) and Great-tailed Grackle (<i>Quiscalus mexicanus</i>). Scavenging, opportunistic species such as Turkey Vulture (<i>Cathartes aura</i>) and Common Raven (<i>Corvus corax</i>) also showed strong positive trends. Trends in wintering populations were largely concordant with estimated trends available from breeding areas in California and western North America. Overall, these abundance data suggest that recent efforts to preserve and restore wetland and riparian habitats may be benefiting birds. However, a similar focus on conservation of the Central Valley's remaining grasslands may be needed to maintain populations of grassland-associated birds.</p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Trends and Traditions:  Avifaunal Change  in Western North America","largerWorkSubtype":{"id":15,"text":"Monograph"},"language":"English","publisher":"Western Field Ornithologists","doi":"10.21199/SWB3.12","collaboration":"Western Field Ornithologists","usgsCitation":"Pandolfino, E.R., and Handel, C.M., 2018, Population trends of birds wintering in the Central Valley of California, chap. <i>of</i> Trends and Traditions:  Avifaunal Change  in Western North America, v. 3, p. 215-235, https://doi.org/10.21199/SWB3.12.","productDescription":"21 p.","startPage":"215","endPage":"235","ipdsId":"IP-096037","costCenters":[{"id":117,"text":"Alaska Science Center Biology WTEB","active":true,"usgs":true}],"links":[{"id":488979,"rank":0,"type":{"id":40,"text":"Open Access Publisher Index Page"},"url":"https://doi.org/10.21199/swb3.12","text":"Publisher Index Page"},{"id":365081,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"Canada, Mexico, United States","volume":"3","publishingServiceCenter":{"id":12,"text":"Tacoma PSC"},"noUsgsAuthors":false,"publicationDate":"2017-09-01","publicationStatus":"PW","contributors":{"authors":[{"text":"Pandolfino, Edward R","contributorId":209700,"corporation":false,"usgs":false,"family":"Pandolfino","given":"Edward","email":"","middleInitial":"R","affiliations":[],"preferred":false,"id":748594,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Handel, Colleen M. 0000-0002-0267-7408 cmhandel@usgs.gov","orcid":"https://orcid.org/0000-0002-0267-7408","contributorId":3067,"corporation":false,"usgs":true,"family":"Handel","given":"Colleen","email":"cmhandel@usgs.gov","middleInitial":"M.","affiliations":[{"id":117,"text":"Alaska Science Center Biology WTEB","active":true,"usgs":true}],"preferred":true,"id":748593,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70217691,"text":"70217691 - 2018 - Multi-scale geophysical mapping of deep permafrost change after disturbance in interior Alaska, USA","interactions":[],"lastModifiedDate":"2021-02-09T12:34:12.316556","indexId":"70217691","displayToPublicDate":"2018-12-31T11:52:17","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Multi-scale geophysical mapping of deep permafrost change after disturbance in interior Alaska, USA","docAbstract":"<p>Disturbance related to fire or hydrologic processes can cause degradation of deep (greater than 1 m) permafrost. These changes in deep permafrost have the potential to impact landscapes and infrastructure, alter the routing and distribution of surface water or groundwater, and may contribute to the flux of carbon to terrestrial and aquatic ecosystems. However, characterization of deep permafrost over large areas and with high spatial resolution is not possible with traditional remote sensing or surface observations. We make use of multiple ground-based and airborne geophysical methods, as well as numerical simulations, to better understand the distribution of permafrost and how it has changed after disturbance. Together, these geophysical datasets help to fill a critical gap in understanding permafrost landscapes and their response to disturbance. </p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"5th European conference on permafrost, book of abstracts","largerWorkSubtype":{"id":12,"text":"Conference publication"},"conferenceTitle":"5th European Conference on Permafrost","conferenceDate":"June 23-July 1, 2018","conferenceLocation":"Chamonix, France","language":"English","publisher":"Laboratoire EDYTEM","usgsCitation":"Minsley, B.J., Bloss, B.R., Ebel, B., Rey, D.M., Walvoord, M.A., Brown, D., Daanen, R., Emond, A.M., Kass, M., Pastick, N.J., and Wylie, B., 2018, Multi-scale geophysical mapping of deep permafrost change after disturbance in interior Alaska, USA, <i>in</i> 5th European conference on permafrost, book of abstracts, v. 2, Chamonix, France, June 23-July 1, 2018, p. 896-897.","productDescription":"2 p.","startPage":"896","endPage":"897","ipdsId":"IP-093541","costCenters":[{"id":211,"text":"Crustal Geophysics and Geochemistry Science Center","active":true,"usgs":true}],"links":[{"id":383105,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":383104,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://hal.archives-ouvertes.fr/hal-01816115/"}],"country":"United States","state":"Alaska","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -155.65429687499997,\n              61.10078883158897\n            ],\n            [\n              -141.1083984375,\n              61.10078883158897\n            ],\n            [\n              -141.1083984375,\n              66.99025646736109\n            ],\n            [\n              -155.65429687499997,\n              66.99025646736109\n            ],\n            [\n              -155.65429687499997,\n              61.10078883158897\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","volume":"2","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Minsley, Burke J. 0000-0003-1689-1306 bminsley@usgs.gov","orcid":"https://orcid.org/0000-0003-1689-1306","contributorId":697,"corporation":false,"usgs":true,"family":"Minsley","given":"Burke","email":"bminsley@usgs.gov","middleInitial":"J.","affiliations":[{"id":211,"text":"Crustal Geophysics and Geochemistry Science Center","active":true,"usgs":true}],"preferred":true,"id":809265,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Bloss, Benjamin R. 0000-0002-1678-8571 bbloss@usgs.gov","orcid":"https://orcid.org/0000-0002-1678-8571","contributorId":139981,"corporation":false,"usgs":true,"family":"Bloss","given":"Benjamin","email":"bbloss@usgs.gov","middleInitial":"R.","affiliations":[{"id":211,"text":"Crustal Geophysics and Geochemistry Science Center","active":true,"usgs":true}],"preferred":true,"id":809266,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Ebel, Brian A. 0000-0002-5413-3963","orcid":"https://orcid.org/0000-0002-5413-3963","contributorId":211845,"corporation":false,"usgs":true,"family":"Ebel","given":"Brian A.","affiliations":[{"id":37277,"text":"WMA - Earth System Processes Division","active":true,"usgs":true}],"preferred":true,"id":809267,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Rey, David Matthew 0000-0002-9737-7239","orcid":"https://orcid.org/0000-0002-9737-7239","contributorId":248499,"corporation":false,"usgs":true,"family":"Rey","given":"David","email":"","middleInitial":"Matthew","affiliations":[{"id":5044,"text":"National Research Program - Central Branch","active":true,"usgs":true}],"preferred":true,"id":809268,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Walvoord, Michelle A. 0000-0003-4269-8366","orcid":"https://orcid.org/0000-0003-4269-8366","contributorId":211843,"corporation":false,"usgs":true,"family":"Walvoord","given":"Michelle","email":"","middleInitial":"A.","affiliations":[{"id":37277,"text":"WMA - Earth System Processes Division","active":true,"usgs":true}],"preferred":true,"id":809269,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Brown, Dana R.N.","contributorId":187502,"corporation":false,"usgs":false,"family":"Brown","given":"Dana R.N.","affiliations":[],"preferred":false,"id":809270,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Daanen, Ronald","contributorId":191060,"corporation":false,"usgs":false,"family":"Daanen","given":"Ronald","email":"","affiliations":[],"preferred":false,"id":809271,"contributorType":{"id":1,"text":"Authors"},"rank":7},{"text":"Emond, Abraham M.","contributorId":216313,"corporation":false,"usgs":false,"family":"Emond","given":"Abraham","email":"","middleInitial":"M.","affiliations":[{"id":16126,"text":"Alaska Division of Geological and Geophysical Surveys","active":true,"usgs":false}],"preferred":false,"id":809272,"contributorType":{"id":1,"text":"Authors"},"rank":8},{"text":"Kass, M. Andy","contributorId":248501,"corporation":false,"usgs":false,"family":"Kass","given":"M. Andy","affiliations":[{"id":37318,"text":"Aarhus University","active":true,"usgs":false}],"preferred":false,"id":809273,"contributorType":{"id":1,"text":"Authors"},"rank":9},{"text":"Pastick, Neal J. 0000-0002-8169-3018 njpastick@usgs.gov","orcid":"https://orcid.org/0000-0002-8169-3018","contributorId":4785,"corporation":false,"usgs":true,"family":"Pastick","given":"Neal","email":"njpastick@usgs.gov","middleInitial":"J.","affiliations":[{"id":222,"text":"Earth Resources Observation and Science (EROS) Center","active":true,"usgs":true},{"id":223,"text":"Earth Resources Observation and Science (EROS) Center (Geography)","active":false,"usgs":true},{"id":200,"text":"Coop Res Unit Seattle","active":true,"usgs":true}],"preferred":true,"id":809274,"contributorType":{"id":1,"text":"Authors"},"rank":10},{"text":"Wylie, Bruce 0000-0002-7374-1083","orcid":"https://orcid.org/0000-0002-7374-1083","contributorId":201929,"corporation":false,"usgs":true,"family":"Wylie","given":"Bruce","affiliations":[{"id":222,"text":"Earth Resources Observation and Science (EROS) Center","active":true,"usgs":true}],"preferred":true,"id":809275,"contributorType":{"id":1,"text":"Authors"},"rank":11}]}}
,{"id":70237022,"text":"70237022 - 2018 - Quantifying the effect of beating inferred from recorded responses of tall buildings","interactions":[],"lastModifiedDate":"2022-09-28T16:43:47.384552","indexId":"70237022","displayToPublicDate":"2018-12-31T11:42:42","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Quantifying the effect of beating inferred from recorded responses of tall buildings","docAbstract":"<p>The beating phenomenon observed in recorded earthquake responses of a tall building in Japan and of two others buildings in the U.S. are examined in this paper. The objective of the paper is to discuss the significance of beating and to estimate what percentage of total shaking energy impacting a building is contributed by beating when it occurs. Beating is prominent in the prolonged resonant responses of lightly damped structures and is a periodic vibrational behavior caused by distinctive coupling between translational and torsional modes that typically have close frequencies. Resonances from site effects may also enhance beating. Spectral analyses and system identification techniques are used herein to quantify the periods and amplitudes of the beating from strong-motion recordings of the three buildings. Quantification of beating is a first step towards determining remedial actions to improve building resilience to this phenomenon. It is shown by the analysis presented in this paper that the ratio of additional vibrational energy of a building exhibiting beating with respect to a postulated zero beating status can be as much as 105% depending on the building and the strong shaking record. Hence, beating should be considered during design and analyses process. Alternatively, remedies maybe implemented for existing buildings.</p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Proceedings of the 11th national conference in earthquake engineering","largerWorkSubtype":{"id":12,"text":"Conference publication"},"conferenceTitle":"11th National Conference on Earthquake Engineering 2018 (11NCEE): Integrating Science, Engineering, & Policy","conferenceDate":"Jun 25-29, 2018","conferenceLocation":"Los Angeles, CA","language":"English","publisher":"Earthquake Engineering Research Institute","usgsCitation":"Celebi, M., 2018, Quantifying the effect of beating inferred from recorded responses of tall buildings, <i>in</i> Proceedings of the 11th national conference in earthquake engineering, Los Angeles, CA, Jun 25-29, 2018, 12 p.","productDescription":"12 p.","ipdsId":"IP-089453","costCenters":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"links":[{"id":407521,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":407520,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://eeri.org/about-eeri/news/4631-5611ncee-papers-presentations-view-online"}],"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Celebi, Mehmet 0000-0002-4769-7357 celebi@usgs.gov","orcid":"https://orcid.org/0000-0002-4769-7357","contributorId":200969,"corporation":false,"usgs":true,"family":"Celebi","given":"Mehmet","email":"celebi@usgs.gov","affiliations":[],"preferred":true,"id":853102,"contributorType":{"id":1,"text":"Authors"},"rank":1}]}}
,{"id":70208189,"text":"70208189 - 2018 - Landscape conservation design for enhancing the adaptive capacity of coastal wetlands in the face of sea-level rise and coastal development","interactions":[],"lastModifiedDate":"2020-03-02T11:41:22","indexId":"70208189","displayToPublicDate":"2018-12-31T11:40:55","publicationYear":"2018","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":4,"text":"Other Government Series"},"title":"Landscape conservation design for enhancing the adaptive capacity of coastal wetlands in the face of sea-level rise and coastal development","docAbstract":"Coastal wetlands provide many valuable benefits to people and wildlife, including critical habitat, improved water quality, reduced flooding impacts, and protected coastlines. However, in the 21st century, accelerated sea-level rise and coastal development are expected to greatly alter coastal landscapes across the globe. The future of coastal wetlands is uncertain, challenging coastal environmental managers to develop conservation strategies that will increase the resilience of these valuable ecosystems to change and preserve the benefits they provide. One strategy for preparing for the effects of sea-level rise is to ensure that there is space available for coastal wetlands to migrate inland. In a recent study, we identified areas where coastal wetlands may move inland along the northern Gulf of Mexico coast, one of the most wetland-rich and sea-level rise sensitive regions of the world. Building on these findings, this project produced customized landscape conservation-design products focused on identifying landward migration routes for coastal wetlands. The resulting products provide environmental managers with information to make decisions to enhance the capacity of coastal wetlands to adapt to sea-level rise and coastal development, protecting these ecosystems and the critical economic and ecological benefits that they provide.","language":"English","publisher":"South Central Climate Adaptation Center","doi":"10.5066/P9S56BUF","usgsCitation":"Osland, M.J., Borchert, S., and Enwright, N., 2018, Landscape conservation design for enhancing the adaptive capacity of coastal wetlands in the face of sea-level rise and coastal development, 35 p., https://doi.org/10.5066/P9S56BUF.","productDescription":"35 p.","ipdsId":"IP-097193","costCenters":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"links":[{"id":372770,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"country":"United States","state":"Alabama, Florida, Louisiana, Mississippi, Texas","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -82.265625,\n              27.916766641249065\n            ],\n            [\n              -83.5400390625,\n              30.486550842588485\n            ],\n            [\n              -88.59374999999999,\n              31.090574094954192\n            ],\n            [\n              -91.5380859375,\n              30.713503990354965\n            ],\n            [\n              -95.6689453125,\n              29.916852233070173\n            ],\n            [\n              -97.998046875,\n              28.14950321154457\n            ],\n            [\n              -97.91015624999999,\n              26.03704188651584\n            ],\n            [\n              -96.5478515625,\n              26.194876675795218\n            ],\n            [\n              -94.921875,\n              28.613459424004414\n            ],\n            [\n              -91.8896484375,\n              28.9600886880068\n            ],\n            [\n              -90.4833984375,\n              28.07198030177986\n            ],\n            [\n              -87.802734375,\n              29.649868677972304\n            ],\n            [\n              -84.5947265625,\n              29.305561325527698\n            ],\n            [\n              -83.6279296875,\n              28.729130483430154\n            ],\n            [\n              -82.7490234375,\n              26.509904531413927\n            ],\n            [\n              -81.474609375,\n              25.284437746983055\n            ],\n            [\n              -82.265625,\n              27.916766641249065\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","publishingServiceCenter":{"id":5,"text":"Lafayette PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Osland, Michael J. 0000-0001-9902-8692 mosland@usgs.gov","orcid":"https://orcid.org/0000-0001-9902-8692","contributorId":3080,"corporation":false,"usgs":true,"family":"Osland","given":"Michael","email":"mosland@usgs.gov","middleInitial":"J.","affiliations":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true},{"id":455,"text":"National Wetlands Research Center","active":true,"usgs":true}],"preferred":true,"id":780879,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Borchert, Sinead 0000-0002-6665-7115","orcid":"https://orcid.org/0000-0002-6665-7115","contributorId":205378,"corporation":false,"usgs":true,"family":"Borchert","given":"Sinead","email":"","affiliations":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"preferred":true,"id":780880,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Enwright, Nicholas 0000-0002-7887-3261","orcid":"https://orcid.org/0000-0002-7887-3261","contributorId":201674,"corporation":false,"usgs":true,"family":"Enwright","given":"Nicholas","affiliations":[{"id":17705,"text":"Wetland and Aquatic Research Center","active":true,"usgs":true}],"preferred":true,"id":780881,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70230026,"text":"70230026 - 2018 - Book review: Freshwater turtles of Australia","interactions":[],"lastModifiedDate":"2022-03-24T16:32:59.986485","indexId":"70230026","displayToPublicDate":"2018-12-31T11:31:01","publicationYear":"2018","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":1898,"text":"Herpetological Review","active":true,"publicationSubtype":{"id":10}},"title":"Book review: Freshwater turtles of Australia","docAbstract":"<p>No abstract available.&nbsp;</p>","language":"English","publisher":"Society for the Study of Amphibians and Reptiles","usgsCitation":"Lovich, J.E., 2018, Book review: Freshwater turtles of Australia: Herpetological Review, v. 49, no. 3, p. 571-572.","productDescription":"2 p.","startPage":"571","endPage":"572","ipdsId":"IP-099063","costCenters":[{"id":568,"text":"Southwest Biological Science 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,{"id":70217704,"text":"70217704 - 2018 - Airborne electromagnetic imaging of permafrost for hydrologic and infrastructure studies","interactions":[],"lastModifiedDate":"2021-02-08T17:30:57.857317","indexId":"70217704","displayToPublicDate":"2018-12-31T11:28:17","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Airborne electromagnetic imaging of permafrost for hydrologic and infrastructure studies","docAbstract":"<p><span>Permafrost is </span><span>found throughout northern latitudes, </span><span>and </span><span>has</span><span>far reaching implications for natural and </span><span>man</span><span>-</span><span>made </span><span>environments including hydrologic processes, landscape </span><span>dynamics, ecosystems, and infrastructure. While maps of </span><span>near</span><span>-</span><span>surface permafrost characteristics are available, </span><span>relatively little is known about permafrost distributions at </span><span>depth over large areas. Her</span><span>e, we summarize several </span><span>frequency </span><span>domain airborne electromagnetic (AEM) </span><span>surveys acquired within interior Alaska from 2006 </span><span>–</span><span>2016 </span><span>that were collected to </span><span>improve</span><span>understand</span><span>ing of</span><span>permafrost and geological controls on hydrologic </span><span>processes and infrastructure. </span><span>Results of the AEM surveys </span><span>are supported by both hydrogeophysical numerical </span><span>models and ground</span><span>-</span><span>based geophysical observations.</span></p>","conferenceTitle":"7th International Workshop on Airborne Electromagnetics","conferenceDate":"June 17-20, 2018","conferenceLocation":"Kolding, Denmark","language":"English","publisher":"Aarhus University","usgsCitation":"Minsley, B.J., Emond, A.M., Rey, D., and Daanen, R., 2018, Airborne electromagnetic imaging of permafrost for hydrologic and infrastructure studies, 7th 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,{"id":70196938,"text":"70196938 - 2018 - Status of pelagic prey fishes in Lake Michigan, 2017","interactions":[],"lastModifiedDate":"2019-12-05T11:15:38","indexId":"70196938","displayToPublicDate":"2018-12-31T11:13:26","publicationYear":"2018","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"title":"Status of pelagic prey fishes in Lake Michigan, 2017","docAbstract":"Acoustic surveys were conducted in late summer/early fall during the years 1992-1996 and 2001-2017 to estimate pelagic prey fish biomass in Lake Michigan.  Midwater trawling during the surveys as well as target strength provided a measure of species and size composition of the fish community for use in scaling acoustic data and providing species-specific abundance estimates.  The 2017 survey consisted of 34 acoustic transects [711 km total (442 miles)] and 40 midwater trawl tows. Mean prey fish biomass was 7.99 kg/ha [38.9 kilotonnes (kt = 1,000 metric tons)], which was 46% higher than in 2016 and 35% of the long-term (22 years) mean.  The numeric density of the 2017 alewife year-class was 27% of the time series average and 0.6 times the 2016 density.  This year-class contributed 15% of total alewife biomass (4.4 kg/ha).  In 2017, alewife comprised 55% of total prey fish biomass, while rainbow smelt and bloater were 32% and 14 % of total biomass, respectively.  Rainbow smelt biomass in 2017 (1.0 kg/ha) was 29% of the long-term mean and increased for the second time since 2008.  Bloater biomass in 2017 was 2.5 kg/ha and 32% of the long-term mean. Mean density of small bloater in 2017 (120 fish/ha) was 80% of the long-term mean.  Biomass density of large bloater increased to 2.2 kg/ha in 2017.  This remains much lower than in the 1990s but likely shows evidence of recruitment of small fish observed in the past 5 years. Although prey fish biomass remains low relative to the 1990s, it did increase in 2017.  This increase, along with higher-than-average survival of two recent alewife year classes, are likely a response to reduced predation pressure stemming from a reduction in the abundance of Chinook salmon.","largerWorkType":{"id":18,"text":"Report"},"largerWorkTitle":"Complied reports to the Great Lakes Fishery Commission of the annual bottom trawl and acoustics surveys, 2017","largerWorkSubtype":{"id":4,"text":"Other Government Series"},"language":"English","publisher":"Great Lakes Fishery Commission","usgsCitation":"Warner, D.M., Turscah, B., Hanson, D., Desorcie, T.J., O’Brien, T.P., Dieter, P.M., and Smith, J., 2018, Status of pelagic prey fishes in Lake Michigan, 2017, chap. <i>of</i> Complied reports to the Great Lakes Fishery Commission of the annual bottom trawl and acoustics surveys, 2017, p. 29-38.","productDescription":"10 p.","startPage":"29","endPage":"38","ipdsId":"IP-095850","costCenters":[{"id":324,"text":"Great Lakes Science 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,{"id":70227675,"text":"70227675 - 2018 - Evaluation of internet surveys for conducting statewide angler surveys in South Dakota","interactions":[],"lastModifiedDate":"2022-01-26T17:16:32.627283","indexId":"70227675","displayToPublicDate":"2018-12-31T11:12:04","publicationYear":"2018","noYear":false,"publicationType":{"id":2,"text":"Article"},"publicationSubtype":{"id":10,"text":"Journal Article"},"seriesTitle":{"id":3176,"text":"Proceedings of the South Dakota Academy of Science","active":true,"publicationSubtype":{"id":10}},"title":"Evaluation of internet surveys for conducting statewide angler surveys in South Dakota","docAbstract":"Stakeholder information is critical for effective fisheries management. Agencies have traditionally used infrequent mail surveys to collect human dimensions data. Internet surveys provide cost savings, but are associated with caution due to data quality issues. To improve study validity, survey access can be controlled using email invitations, but because these addresses are voluntary, results may not be applicable to the entire population. Additionally, internet surveys typically have lower response rates than mail surveys, thus, a greater potential for nonresponse bias. To identify potential coverage and nonresponse biases in information typically collected by statewide angler surveys, we emailed a link to a web-based survey to all anglers who provided South Dakota Game, Fish and Parks (SDGFP) with an email address at the end of the 2011 and 2012 fishing seasons (December 31). Next, we mailed the same questionnaire to both a random sample of anglers not providing an email address and a sample of non-respondents to the internet survey. Internet survey results were similar to both mail surveys for variables SDGFP typically monitors via statewide angler surveys with the exception of slightly over representing male anglers and younger anglers; however, these slight biases can be adjusted by weighting procedures. 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,{"id":70222348,"text":"70222348 - 2018 - Yellowstone River Compact Commission sixty-seventh annual report 2018","interactions":[],"lastModifiedDate":"2022-04-18T14:07:14.680314","indexId":"70222348","displayToPublicDate":"2018-12-31T10:48:44","publicationYear":"2018","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":1,"text":"Federal Government Series"},"seriesTitle":{"id":5883,"text":"Cooperator Report","active":true,"publicationSubtype":{"id":1}},"title":"Yellowstone River Compact Commission sixty-seventh annual report 2018","docAbstract":"<p>No abstract available.</p>","language":"English","publisher":"Yellowstone River Compact Commission","usgsCitation":"Davidson, S., 2018, Yellowstone River Compact Commission sixty-seventh annual report 2018: Cooperator Report, xx, 38 p.","productDescription":"xx, 38 p.","ipdsId":"IP-121288","costCenters":[{"id":5050,"text":"WY-MT Water Science Center","active":true,"usgs":true}],"links":[{"id":398919,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":387389,"rank":1,"type":{"id":11,"text":"Document"},"url":"https://water.usgs.gov/water-resources/YRCC-docs/YRCCAnnualReport2018.pdf"}],"country":"United States","state":"Montana, North Dakota, Wyoming","otherGeospatial":"Yellostone River basin","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -103.77685546875,\n              47.84265762816538\n            ],\n            [\n              -104.1064453125,\n              47.96050238891509\n            ],\n            [\n              -106.98486328124999,\n              46.89023157359399\n            ],\n            [\n              -109.951171875,\n              45.89000815866184\n            ],\n            [\n              -112.35717773437499,\n              45.79050946752472\n            ],\n            [\n              -111.90673828125,\n              44.96479793033101\n            ],\n            [\n              -110.950927734375,\n              44.74673324024678\n            ],\n            [\n              -110.76416015625,\n              43.8028187190472\n            ],\n            [\n              -109.5556640625,\n              42.88401467044253\n            ],\n            [\n              -109.1436767578125,\n              42.5530802889558\n            ],\n            [\n              -108.8580322265625,\n              42.52677220056902\n            ],\n            [\n              -108.73992919921875,\n              42.500453028125584\n            ],\n            [\n              -106.5673828125,\n              43.28520334369384\n            ],\n            [\n              -104.688720703125,\n              44.99588261816546\n            ],\n            [\n              -104.161376953125,\n              47.331377157798244\n            ],\n            [\n              -103.77685546875,\n              47.84265762816538\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Davidson, Seth 0000-0002-9548-468X","orcid":"https://orcid.org/0000-0002-9548-468X","contributorId":218042,"corporation":false,"usgs":true,"family":"Davidson","given":"Seth","affiliations":[{"id":5050,"text":"WY-MT Water Science Center","active":true,"usgs":true}],"preferred":true,"id":819722,"contributorType":{"id":1,"text":"Authors"},"rank":1}]}}
,{"id":70201052,"text":"70201052 - 2018 - Digital 3D geologic framework of the Las Cruces area","interactions":[],"lastModifiedDate":"2019-02-06T10:36:23","indexId":"70201052","displayToPublicDate":"2018-12-31T10:36:16","publicationYear":"2018","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"title":"Digital 3D geologic framework of the Las Cruces area","docAbstract":"<p>No abstract available.</p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"New Mexico Geological Society Fall Field Conference Guidebook – 69 Las Cruces Country III","language":"English","publisher":"New Mexico Geological Society","usgsCitation":"Sweetkind, D., 2018, Digital 3D geologic framework of the Las Cruces area, chap. <i>of</i> New Mexico Geological Society Fall Field Conference Guidebook – 69 Las Cruces Country III, p. 60-62.","productDescription":"3 p.","startPage":"60","endPage":"62","ipdsId":"IP-094614","costCenters":[{"id":318,"text":"Geosciences and Environmental Change Science Center","active":true,"usgs":true}],"links":[{"id":361042,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":361041,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://nmgs.nmt.edu/publications/guidebooks/69/"}],"publishingServiceCenter":{"id":2,"text":"Denver PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Sweetkind, Donald S. 0000-0003-0892-4796","orcid":"https://orcid.org/0000-0003-0892-4796","contributorId":210808,"corporation":false,"usgs":true,"family":"Sweetkind","given":"Donald S.","affiliations":[{"id":318,"text":"Geosciences and Environmental Change Science Center","active":true,"usgs":true}],"preferred":true,"id":752069,"contributorType":{"id":1,"text":"Authors"},"rank":1}]}}
,{"id":70240324,"text":"70240324 - 2018 - Development and utility of a gene transcription panel for desert bighorn sheep (Ovis canadensis nelsoni)","interactions":[],"lastModifiedDate":"2023-02-06T16:44:46.132276","indexId":"70240324","displayToPublicDate":"2018-12-31T10:30:26","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"displayTitle":"Development and utility of a gene transcription panel for desert bighorn sheep (<i>Ovis canadensis nelsoni</i>)","title":"Development and utility of a gene transcription panel for desert bighorn sheep (Ovis canadensis nelsoni)","docAbstract":"<p>Respiratory disease is a key factor impacting the success of the ongoing conservation and recovery of wild sheep populations (WAFWA 2017).&nbsp;&nbsp;Although the primary pathogens involved in the bighorn sheep pneumonia complex have been identified, the wide variability in herd response following infection is not well understood (Cassirer et al. 2018). The response of populations infected with <i>Mycoplasma&nbsp;ovipneumoniae</i> has been variable, from minimal to extensive herd mortality followed by years to decades of either poor lamb recruitment or little expression of disease and minimal impact on lamb survival (Coggins and Mathews 1992, Jorgenson et al. 1997, Cassirer et al. 2018). This variation is thought to be caused by differences in pathogen virulence, intrinsic or extrinsic factors that impact individual or herd immunity, including lungworm (<i>Protostrongylus</i>&nbsp;spp.)&nbsp;or&nbsp;mite&nbsp;(<i>Psoroptes&nbsp;ovis</i>) infections, malnutrition, inbreeding, harsh weather conditions, or stress associated with overcrowding (Risenhoover et al. 1988, Bailey 1990, Jones and Worley 1994, Monello et al. 2001).&nbsp;&nbsp;Although substantial management strategies have been implemented, they have been ineffective in halting the spread of the epizootic (Cassirer et al. 2018).&nbsp;&nbsp;&nbsp;</p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Biennial symposium of the Northern Wild Sheep and Goat Council","largerWorkSubtype":{"id":12,"text":"Conference publication"},"language":"English","publisher":"Northern Wild Sheep and Goat Council","usgsCitation":"Bowen, L., Longshore, K., Wolff, P., Waters-Dynes, S.C., Miles, A.K., Cox, M., and Bullock, S., 2018, Development and utility of a gene transcription panel for desert bighorn sheep (Ovis canadensis nelsoni), <i>in</i> Biennial symposium of the Northern Wild Sheep and Goat Council, v. 21, p. 2-6.","productDescription":"5 p.","startPage":"2","endPage":"6","ipdsId":"IP-099566","costCenters":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"links":[{"id":412745,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":412705,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://www.nwsgc.org/contents/2018contents.html","linkFileType":{"id":5,"text":"html"}}],"volume":"21","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Bowen, Lizabeth 0000-0001-9115-4336 lbowen@usgs.gov","orcid":"https://orcid.org/0000-0001-9115-4336","contributorId":4539,"corporation":false,"usgs":true,"family":"Bowen","given":"Lizabeth","email":"lbowen@usgs.gov","affiliations":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"preferred":true,"id":863402,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Longshore, Kathleen 0000-0001-6621-1271","orcid":"https://orcid.org/0000-0001-6621-1271","contributorId":216374,"corporation":false,"usgs":true,"family":"Longshore","given":"Kathleen","email":"","affiliations":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"preferred":true,"id":863403,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Wolff, Peregrine","contributorId":238063,"corporation":false,"usgs":false,"family":"Wolff","given":"Peregrine","affiliations":[{"id":27489,"text":"Nevada Department of Wildlife","active":true,"usgs":false}],"preferred":false,"id":863404,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Waters-Dynes, Shannon C. 0000-0002-9707-4684 swaters@usgs.gov","orcid":"https://orcid.org/0000-0002-9707-4684","contributorId":5826,"corporation":false,"usgs":true,"family":"Waters-Dynes","given":"Shannon","email":"swaters@usgs.gov","middleInitial":"C.","affiliations":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"preferred":true,"id":863405,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Miles, A. Keith 0000-0002-3108-808X keith_miles@usgs.gov","orcid":"https://orcid.org/0000-0002-3108-808X","contributorId":196,"corporation":false,"usgs":true,"family":"Miles","given":"A.","email":"keith_miles@usgs.gov","middleInitial":"Keith","affiliations":[{"id":651,"text":"Western Ecological Research Center","active":true,"usgs":true}],"preferred":true,"id":863406,"contributorType":{"id":1,"text":"Authors"},"rank":5},{"text":"Cox, Mike","contributorId":198457,"corporation":false,"usgs":false,"family":"Cox","given":"Mike","email":"","affiliations":[],"preferred":false,"id":863407,"contributorType":{"id":1,"text":"Authors"},"rank":6},{"text":"Bullock, Sarah","contributorId":238064,"corporation":false,"usgs":false,"family":"Bullock","given":"Sarah","email":"","affiliations":[{"id":47694,"text":"USFWS - Desert NWR","active":true,"usgs":false}],"preferred":false,"id":863408,"contributorType":{"id":1,"text":"Authors"},"rank":7}]}}
,{"id":70198416,"text":"70198416 - 2018 - A regional analysis of long-term gray and harbor seal stranding events","interactions":[],"lastModifiedDate":"2020-12-10T16:32:39.915725","indexId":"70198416","displayToPublicDate":"2018-12-31T10:24:35","publicationYear":"2018","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":9,"text":"Other Report"},"title":"A regional analysis of long-term gray and harbor seal stranding events","docAbstract":"<p><span>Strong indicators of species’ sensitivity, adaptive capacity, and overall vulnerability to climate change are provided by changes in phenology, the timing of recurring life events (Parmesan and Yohe, 2003). We possess poor information on climate induced shifts in phenology of marine organisms, especially top predators. The Gulf of Maine (GOM) Seasonal Migrants Project is an ongoing effort to determine the phenological changes occurring in the GOM across marine mammals, sea turtles, and other marine species of conservation concern. As part of that study, stranding data of injured or dead animals was explored for its utility to serve as supplemental data to amend more traditional survey data where observations are scarce.</span></p><p><span>NOAA’s Greater Atlantic Region Marine Mammal Stranding Network Database was examined for its utility as a potential long-term time series for the evaluation of phenological patterns and shifts. Although records from stranding events represent sick or injured animals, these data have been found to be reasonably comparable to survey data and provide useful information on species’ distribution, abundance, and foraging ecology (Maldini et al., 2005; Staudinger et al., 2014; Johnston et al., 2012, 2015). In this study, we focused on stranding data of two marine mammal species, harbor seals (Phoca vitulina) and gray seals (Halichoerus grypus). It was anticipated these data would also be good indicators of the areas and habitats that seal populations use on a seasonal and annual basis in the region. Viable stranding data from Maine to North Carolina included 1,571 gray seals and 4,399 harbor seals from 2001 to 2015. This paper presents a summary of the spatial and temporal patterns of these data, and suggests their suitability as supplemental data to other GOM marine species phenological studies, such as the North Atlantic Right Whale Consortium database modeling efforts.</span></p>","language":"English","publisher":"Northeast Climate Adaptation Science Center","usgsCitation":"Jones, K.M., and Staudinger, M., 2018, A regional analysis of long-term gray and harbor seal stranding events, 18 p.","productDescription":"18 p.","ipdsId":"IP-098831","costCenters":[{"id":5080,"text":"Northeast Climate Adaptation Science Center","active":true,"usgs":true}],"links":[{"id":381200,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":381199,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://www.umass.edu/necsc/biblio/regional-analysis-long-term-gray-and-harbor-seal-stranding-events"}],"publishingServiceCenter":{"id":9,"text":"Reston PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Jones, Katharine M. L.","contributorId":245633,"corporation":false,"usgs":false,"family":"Jones","given":"Katharine","email":"","middleInitial":"M. L.","affiliations":[],"preferred":false,"id":806669,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Staudinger, Michelle","contributorId":206654,"corporation":false,"usgs":true,"family":"Staudinger","given":"Michelle","affiliations":[{"id":5080,"text":"Northeast Climate Adaptation Science Center","active":true,"usgs":true}],"preferred":true,"id":741371,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70209729,"text":"70209729 - 2018 - The 3D elevation program","interactions":[],"lastModifiedDate":"2020-04-23T15:20:43.052483","indexId":"70209729","displayToPublicDate":"2018-12-31T10:19:25","publicationYear":"2018","noYear":false,"publicationType":{"id":5,"text":"Book chapter"},"publicationSubtype":{"id":24,"text":"Book Chapter"},"chapter":"5","title":"The 3D elevation program","docAbstract":"<p>No abstract available.</p>","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Digital elevation model technologies and applications : the DEM users manual","largerWorkSubtype":{"id":15,"text":"Monograph"},"language":"English","publisher":"ASPRS","usgsCitation":"Stoker, J.M., Lukas, V., Jason, A.L., Eldridge, D.F., and Sugarbaker, L.J., 2018, The 3D elevation program, chap. 5 <i>of</i> Digital elevation model technologies and applications : the DEM users manual.","ipdsId":"IP-081117","costCenters":[{"id":423,"text":"National Geospatial Program","active":true,"usgs":true}],"links":[{"id":374223,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Stoker, Jason M. 0000-0003-2455-0931 jstoker@usgs.gov","orcid":"https://orcid.org/0000-0003-2455-0931","contributorId":3021,"corporation":false,"usgs":true,"family":"Stoker","given":"Jason","email":"jstoker@usgs.gov","middleInitial":"M.","affiliations":[{"id":223,"text":"Earth Resources Observation and Science (EROS) Center (Geography)","active":false,"usgs":true},{"id":423,"text":"National Geospatial Program","active":true,"usgs":true}],"preferred":true,"id":787689,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Lukas, Vicki 0000-0002-3151-6689 vlukas@usgs.gov","orcid":"https://orcid.org/0000-0002-3151-6689","contributorId":2890,"corporation":false,"usgs":true,"family":"Lukas","given":"Vicki","email":"vlukas@usgs.gov","affiliations":[{"id":423,"text":"National Geospatial Program","active":true,"usgs":true}],"preferred":true,"id":787690,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Jason, Allyson L. 0000-0001-5590-3766 ajason@usgs.gov","orcid":"https://orcid.org/0000-0001-5590-3766","contributorId":224300,"corporation":false,"usgs":true,"family":"Jason","given":"Allyson","email":"ajason@usgs.gov","middleInitial":"L.","affiliations":[{"id":423,"text":"National Geospatial Program","active":true,"usgs":true}],"preferred":true,"id":787691,"contributorType":{"id":1,"text":"Authors"},"rank":3},{"text":"Eldridge, Diane F. 0000-0002-2821-6239 deldridge@usgs.gov","orcid":"https://orcid.org/0000-0002-2821-6239","contributorId":196409,"corporation":false,"usgs":true,"family":"Eldridge","given":"Diane","email":"deldridge@usgs.gov","middleInitial":"F.","affiliations":[],"preferred":false,"id":787692,"contributorType":{"id":1,"text":"Authors"},"rank":4},{"text":"Sugarbaker, Larry J. 0000-0002-5720-0738 lsugarbaker@usgs.gov","orcid":"https://orcid.org/0000-0002-5720-0738","contributorId":224301,"corporation":false,"usgs":true,"family":"Sugarbaker","given":"Larry","email":"lsugarbaker@usgs.gov","middleInitial":"J.","affiliations":[{"id":423,"text":"National Geospatial Program","active":true,"usgs":true}],"preferred":true,"id":787693,"contributorType":{"id":1,"text":"Authors"},"rank":5}]}}
,{"id":70198417,"text":"70198417 - 2018 - A review of literature for gray and harbor seals","interactions":[],"lastModifiedDate":"2020-12-10T16:15:40.416667","indexId":"70198417","displayToPublicDate":"2018-12-31T10:13:03","publicationYear":"2018","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":9,"text":"Other Report"},"title":"A review of literature for gray and harbor seals","docAbstract":"<p><span>Climate change is impacting marine species, causing shifts in occurrence, distribution, and phenology, which can ultimately effect ecosystem structure and functioning (Parmesan &amp; Yohe 2003; Burrows et al. 2011). The study of the timing of recurring biological events throughout an organism’s life is known as phenology (Parmesan &amp; Yohe 2003). The way organisms respond to climate change through altered timing offers insight into their sensitivity and adaptability (Parmesan &amp; Yohe 2003).</span><br><span>To gain an understanding of pinniped vulnerability to climate change, specifically through changes in phenology, a comprehensive literature search was conducted using several online databases (e.g., Web of Science, Google Scholar and PubMed). Combinations of relevant terms were searched in order to find studies pertaining to the life history of two regionally important pinniped species: the gray seal (Halichoerus grypus) and the harbor seal (Phoca vitulina). Although special attention was given to studies conducted in the Northwestern Atlantic region, publications giving information on populations in other parts of the world provided important proxy information. Keyword searches were conducted in Web of Science and Google Scholar and represent the published literature through 2017. The remainder of the publications found were cited in the literature returned from the two searches.</span><br><span>This document provides an annotated bibliography organized by species (gray and harbor seals) and region, with topical sections for important attributes (e.g. foraging). The focus of this search was for the Gulf of Maine region, but other relevant information yielded by the literature search is presented in order of approximate distance from the focal area.</span></p>","language":"English","publisher":"Northeast Climate Adaptation Science Center","usgsCitation":"Calandrino, G., Pendleton, D., and Staudinger, M., 2018, A review of literature for gray and harbor seals, 34 p.","productDescription":"34 p.","ipdsId":"IP-099373","costCenters":[{"id":5080,"text":"Northeast Climate Adaptation Science Center","active":true,"usgs":true}],"links":[{"id":381198,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":381197,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://necsc.umass.edu/biblio/review-literature-gray-and-harbor-seals"}],"publishingServiceCenter":{"id":9,"text":"Reston PSC"},"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Calandrino, Gabrielle","contributorId":206656,"corporation":false,"usgs":false,"family":"Calandrino","given":"Gabrielle","email":"","affiliations":[{"id":34616,"text":"University of Massachusetts Amherst","active":true,"usgs":false}],"preferred":false,"id":741373,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Pendleton, Daniel","contributorId":206657,"corporation":false,"usgs":false,"family":"Pendleton","given":"Daniel","affiliations":[{"id":37373,"text":"New England Aquarium","active":true,"usgs":false}],"preferred":false,"id":741374,"contributorType":{"id":1,"text":"Authors"},"rank":2},{"text":"Staudinger, Michelle 0000-0002-4535-2005","orcid":"https://orcid.org/0000-0002-4535-2005","contributorId":206655,"corporation":false,"usgs":true,"family":"Staudinger","given":"Michelle","affiliations":[{"id":5080,"text":"Northeast Climate Adaptation Science Center","active":true,"usgs":true}],"preferred":true,"id":741372,"contributorType":{"id":1,"text":"Authors"},"rank":3}]}}
,{"id":70222618,"text":"70222618 - 2018 - Validating ground-motion simulations on rough faults in complex 3D media","interactions":[],"lastModifiedDate":"2021-08-10T11:35:30.321721","indexId":"70222618","displayToPublicDate":"2018-12-31T09:05:35","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Validating ground-motion simulations on rough faults in complex 3D media","docAbstract":"We utilize a two-step process to validate 0-4 Hz ground motion simulations using the 1989 Loma Prieta earthquake.  In the first step we run multiple realizations using the Graves and Pitarka hybrid method as implemented on the SCEC Broadband Simulation Platform and compare these with near-fault (R < 40 km) recorded motions.  A total of 648 rupture scenarios are examined and from these results we select the best fitting ruptures, which are then used in the second step of the validation.  This second step consists of running 3D simulations using a finely sampled seismic velocity mesh. The base 3D structure is obtained from the USGS SF Bay Area velocity model, which is also modified to include small-scale 3D stochastic perturbations. The 3D results are compared with the recorded motions and show very good agreement over the frequency band 0-4 Hz for distances out to 40 km. Most importantly, the newly added features to the simulation process reduce the coherency of the radiated higher frequency (f > 1 Hz) ground motions, and homogenize radiation-pattern effects in this same bandwidth, bringing the simulations into closer agreement with the very near-fault records.","largerWorkType":{"id":4,"text":"Book"},"largerWorkTitle":"Proceedings of eleventh U.S. national conference on earthquake engineering","largerWorkSubtype":{"id":12,"text":"Conference publication"},"conferenceTitle":"11th National Conference on Earthquake Engineering 2018 (11NCEE): Integrating Science, Engineering, & Policy","conferenceDate":"June 25-29, 2018","conferenceLocation":"Los Angeles, CA","language":"English","publisher":"Earthquake Engineering Research Institute","usgsCitation":"Graves, R., and Pitarka, A., 2018, Validating ground-motion simulations on rough faults in complex 3D media, <i>in</i> Proceedings of eleventh U.S. national conference on earthquake engineering, Los Angeles, CA, June 25-29, 2018, p. 4120-4129.","productDescription":"10 p","startPage":"4120","endPage":"4129","ipdsId":"IP-096616","costCenters":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"links":[{"id":387781,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"}],"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Graves, Robert 0000-0001-9758-453X rwgraves@usgs.gov","orcid":"https://orcid.org/0000-0001-9758-453X","contributorId":140738,"corporation":false,"usgs":true,"family":"Graves","given":"Robert","email":"rwgraves@usgs.gov","affiliations":[{"id":237,"text":"Earthquake Science Center","active":true,"usgs":true}],"preferred":true,"id":820779,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Pitarka, Arben","contributorId":184062,"corporation":false,"usgs":false,"family":"Pitarka","given":"Arben","email":"","affiliations":[],"preferred":false,"id":820780,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70211493,"text":"70211493 - 2018 - Climate change refugia","interactions":[],"lastModifiedDate":"2020-07-30T14:00:14.076562","indexId":"70211493","displayToPublicDate":"2018-12-31T08:59:57","publicationYear":"2018","noYear":false,"publicationType":{"id":18,"text":"Report"},"publicationSubtype":{"id":4,"text":"Other Government Series"},"title":"Climate change refugia","docAbstract":"Climate change is affecting the distribution, abundance, and persistence of species and ecosystems around the world. As natural resource managers are tasked with maintaining and protecting species and ecosystems from the effects of a changing climate, options for minimizing impacts are needed. Options for climate adaptation—the policy and management actions taken to minimize negative effects of climate change—include transition, resilience, and resistance strategies (Millar et al. 2007).  Transition or “response” strategies focus on allowing inevitable changes to certain attributes of an ecosystem or species (e.g, species composition or ranges), while maintaining ecosystem function and/or desired ecosystem services.","language":"English","publisher":"USDA Forest Service Climate Change Resource Center","usgsCitation":"Morelli, T.L., and Millar, C., 2018, Climate change refugia, HTML Document.","productDescription":"HTML Document","ipdsId":"IP-100833","costCenters":[{"id":5080,"text":"Northeast Climate Adaptation Science Center","active":true,"usgs":true}],"links":[{"id":376887,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":376809,"type":{"id":15,"text":"Index Page"},"url":"https://www.fs.usda.gov/ccrc/topics/climate-change-refugia"}],"noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Morelli, Toni Lyn 0000-0001-5865-5294 tmorelli@usgs.gov","orcid":"https://orcid.org/0000-0001-5865-5294","contributorId":197458,"corporation":false,"usgs":true,"family":"Morelli","given":"Toni","email":"tmorelli@usgs.gov","middleInitial":"Lyn","affiliations":[{"id":411,"text":"National Climate Change and Wildlife Science Center","active":true,"usgs":true},{"id":5080,"text":"Northeast Climate Adaptation Science Center","active":true,"usgs":true}],"preferred":true,"id":794313,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Millar, Connie","contributorId":236776,"corporation":false,"usgs":false,"family":"Millar","given":"Connie","email":"","affiliations":[{"id":36400,"text":"US Forest Service","active":true,"usgs":false}],"preferred":false,"id":794314,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
,{"id":70217684,"text":"70217684 - 2018 - Airborne geophysical characterizationof geologic structure in a mountain headwater system, upper East River, Colorado","interactions":[],"lastModifiedDate":"2021-02-09T14:38:53.224648","indexId":"70217684","displayToPublicDate":"2018-12-31T08:33:16","publicationYear":"2018","noYear":false,"publicationType":{"id":24,"text":"Conference Paper"},"publicationSubtype":{"id":19,"text":"Conference Paper"},"title":"Airborne geophysical characterizationof geologic structure in a mountain headwater system, upper East River, Colorado","docAbstract":"<p><span>Geologic controls on groundwater flow, particularly in </span><span>tectonically and topographically complex mountainous </span><span>terrain, can be difficult to quantify without a detailed </span><span>understanding of the regional subsurface geologic </span><span>structure. This structure can influence </span><span>the magnitude of </span><span>groundwater flow through the mountain block, which in </span><span>turn impacts groundwater composition and the flux of </span><span>metals and nutrients to the near</span><span>-</span><span>surface ecosystem. In </span><span>support of </span><span>several ongoing studies in the upper East River </span><span>and surrounding w</span><span>atersheds in central Colorado, </span><span>regional</span><span>-</span><span>scale airborne electromagnetic, magnetic, and </span><span>radiometric survey</span><span>s</span><span>were</span><span>conducted</span><span>in late 2017</span><span>. These </span><span>data give a view of the geologic structure underlying the </span><span>region that is unprecedented in both resolution and spa</span><span>tial </span><span>coverage. </span></p>","conferenceTitle":"7th International Workshop on Airborne Electromagnetics","conferenceDate":"June 17-20, 2018","conferenceLocation":"Kolding, Denmark","language":"English","publisher":"Aarhus University","usgsCitation":"Minsley, B.J., and Ball, L.B., 2018, Airborne geophysical characterizationof geologic structure in a mountain headwater system, upper East River, Colorado, 7th International Workshop on Airborne Electromagnetics, Kolding, Denmark, June 17-20, 2018, 2 p.","productDescription":"2 p.","ipdsId":"IP-095926","costCenters":[{"id":35995,"text":"Geology, Geophysics, and Geochemistry Science Center","active":true,"usgs":true}],"links":[{"id":383156,"type":{"id":24,"text":"Thumbnail"},"url":"https://pubs.usgs.gov/thumbnails/outside_thumb.jpg"},{"id":383155,"rank":1,"type":{"id":15,"text":"Index Page"},"url":"https://www.conferencemanager.dk/aem2018"}],"country":"United States","state":"Colorado","otherGeospatial":"East River","geographicExtents":"{\n  \"type\": \"FeatureCollection\",\n  \"features\": [\n    {\n      \"type\": \"Feature\",\n      \"properties\": {},\n      \"geometry\": {\n        \"type\": \"Polygon\",\n        \"coordinates\": [\n          [\n            [\n              -106.94641113281249,\n              38.930837791482\n            ],\n            [\n              -106.99275970458983,\n              38.981563413747686\n            ],\n            [\n              -107.03361511230469,\n              39.012514887438684\n            ],\n            [\n              -107.04597473144531,\n              39.0055786653419\n            ],\n            [\n              -107.01335906982422,\n              38.97222194853654\n            ],\n            [\n              -106.99413299560547,\n              38.93991767539353\n            ],\n            [\n              -106.97181701660156,\n              38.925763232374514\n            ],\n            [\n              -106.9632339477539,\n              38.912674536257356\n            ],\n            [\n              -106.94641113281249,\n              38.930837791482\n            ]\n          ]\n        ]\n      }\n    }\n  ]\n}","noUsgsAuthors":false,"publicationStatus":"PW","contributors":{"authors":[{"text":"Minsley, Burke J. 0000-0003-1689-1306 bminsley@usgs.gov","orcid":"https://orcid.org/0000-0003-1689-1306","contributorId":697,"corporation":false,"usgs":true,"family":"Minsley","given":"Burke","email":"bminsley@usgs.gov","middleInitial":"J.","affiliations":[{"id":211,"text":"Crustal Geophysics and Geochemistry Science Center","active":true,"usgs":true}],"preferred":true,"id":809256,"contributorType":{"id":1,"text":"Authors"},"rank":1},{"text":"Ball, Lyndsay B. 0000-0002-6356-4693 lbball@usgs.gov","orcid":"https://orcid.org/0000-0002-6356-4693","contributorId":1138,"corporation":false,"usgs":true,"family":"Ball","given":"Lyndsay","email":"lbball@usgs.gov","middleInitial":"B.","affiliations":[{"id":211,"text":"Crustal Geophysics and Geochemistry Science Center","active":true,"usgs":true}],"preferred":true,"id":809257,"contributorType":{"id":1,"text":"Authors"},"rank":2}]}}
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