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Publication Extents

Not all publications have extents, not all extents are completely accurate
Evaluating catchability in a large-scale gillnet survey using hydroacoustics: Making the case for coupled surveys
Mark R. DuFour, Song S. Qian, Christine M Mayer, Christopher Vandergoot
2020, Fisheries Research (211) 309-318
Abundance estimates facilitate successful fisheries management. Fisheries agencies often monitor abundance through fishery independent standardized protocols generating relative measures such as catch-per-unit-effort (CPUE), where CPUE is assumed proportional to true abundance. Unfortunately, this assumption is rarely met as fish behavior and environmental...
Relation of fish intersex to contaminants in riverine sport fishes
C. A. Grieshaber, T. N. Penland, Thomas J. Kwak, W. G. Cope, R. J. Heise, J. M. Law, D. Shea, D. D. Aday, J. A. Rice, S. W. Kullman
2020, Science of the Total Environment (643) 73-89
Endocrine active compounds (EACs) are pollutants that have been recognized as an emerging and widespread threat to aquatic ecosystems globally. Intersex, the presence of female germ cells within a predominantly male gonad, is considered a biomarker of endocrine disruption caused by EACs. We measured a suite of EACs and assessed their associated impacts...
Mapping climate change resistant vernal pools in the northeastern U.S.
Jennifer M. Cartwright, Evan H. Campbell Grant
2020, Report
Vernal pools are seasonal wetlands that provide important breeding habitat for a variety of amphibian species. As future climate projections indicate warmer growing seasons and earlier seasonal increases in evapotranspiration, some managers of vernal pools have expressed concern that pools may dry earlier in the season, potentially interfering with completion...
Bighorn sheep habitat and model extrapolation across remote landscapes
Chris Lowrey, Sara Schuster, Kathleen Longshore, Patrick Cummings, Amy Sprunger, Anna Johnson, Grete Elyse Wilson-Henjum
2019, Conference Paper, Desert Bighorn Council Transactions 2019: A compilation of papers presented at the 55th meeting
Determining a species’ habitat use is an essential first step in any wildlife conservation action. We described habitat use, animal movements and probable lambing areas in a remote, restricted-access region of the Mojave Desert. Differences in habitat use between sexes was apparent, supporting the often-reported concept of risk-aversion by females....
Black Scoter habitat use along the southeastern coast of the United States
H. M. Plumpton, E. D. Silverman, Beth Ross
2019, Ecology and Evolution (11) 10813-10820
While the Atlantic Coast of the United States and Canada is a major wintering area for sea ducks, knowledge about their wintering habitat use is relatively limited. Black Scoters have a broad wintering distribution and are the only open water species of sea duck that is abundant along the southeastern...
Regionalization of surface-water statistics using multiple linear regression
William H. Farmer, Julie E. Kiang, Toby D. Feaster, Ken Eng
2019, Techniques and Methods 4-A12
This report serves as a reference document in support of the regionalization of surface-water statistics using multiple linear regression. Streamflow statistics are quantitative characterizations of hydrology and are often derived from observed streamflow records. In the absence of observed streamflow records, as at unmonitored or ungaged locations, other techniques are...
DTSGUI: A python program to process and visualize fiber‐optic distributed temperature sensing data
Marian M. Domanski, Daven Quinn, Frederick D. Day-Lewis, Martin A. Briggs, Dale D. Werkema, John W. Lane Jr.
2019, Groundwater (58) 799-804
Fiber‐optic distributed temperature sensing (FO‐DTS) has proven to be a transformative technology for the hydrologic sciences, with application to diverse problems including hyporheic exchange, groundwater/surface‐water interaction, fractured‐rock characterization, and cold regions hydrology. FO‐DTS produces large, complex, and information‐rich datasets. Despite the potential of FO‐DTS, adoption of the technology has been...
Remobilization of old permafrost carbon to Chukchi Sea sediments during the end of the last deglaciation
Jannik Martens, Birgit Wild, Christof Pearce, Tommaso Tesi, August Andersson, Lisa Broder, Matt O’Regan, Martin Jakobsson, Martin Skold, Laura Gemery, Thomas M. Cronin
2019, Global Biogeochemical Cycles (33) 210-14
Climate warming is expected to destabilize permafrost carbon (PF‐C) by thaw‐erosion and deepening of the seasonally thawed active layer and thereby promote PF‐C mineralization to CO2 and CH4. A similar PF‐C remobilization might have contributed to the increase in atmospheric CO2 during deglacial warming after the last glacial maximum. Using carbon isotopes...
Development of regression equations for the estimation of flood flows at ungaged streams in Pennsylvania
Mark A. Roland, Marla H. Stuckey
2019, Scientific Investigations Report 2019-5094
Regression equations, which may be used to estimate flood flows at select annual exceedance probabilities, were developed for ungaged streams in Pennsylvania. The equations were developed using annual peak flow data through water year 2015 and basin characteristics for 285 streamflow gaging stations across Pennsylvania and surrounding states. The streamgages...
Assessment of the potential for in-plume sulphur dioxide gas-ash interactions to influence the respiratory toxicity of volcanic ash
Ines Tomasek, David Damby, Claire J. Horwell, Paul M Ayris, Pierre Delmelle, Christopher J Ottley, Pablo Cubillas, Ana S Casas, Christoph Bisig, Alke Petri-Fink, Donald B. Dingwell, Martin J D Clift, Barbara Drasler, Barbara Rothen-Rutishauser
2019, Environmental Research (179)
BackgroundVolcanic plumes are complex environments composed of gases and ash particles, where chemical and physical processes occur at different temperature and compositional regimes. Commonly, soluble sulphate- and chloride-bearing salts are formed on ash as gases interact with ash surfaces. Exposure to respirable volcanic ash...
Evaluating environmental change and behavioral decision-making for sustainability policy using an agent-based model: A case study for the Smoky Hill River Watershed, Kansas
Gabriel Granco, Jessica L. Heier Stamm, Jason S. Bergtold, Melinda D. Daniels, Matthew R. Sanderson, Aleksey Y. Sheshukov, Martha E. Mather, Marcellus M. Caldas, Steven M. Ramsey, Richard Lehrter, David A. Haukos, Jungang Gao, Sarmistha Chatterjee, James C. Nifong, Joseph Aistrup
2019, Science of the Total Environment (695)
Sustainability has been at the forefront of the environmental research agenda of the integrated anthroposphere, hydrosphere, and biosphere since the last century and will continue to be critically important for future environmental science. However, linking humans and the environment through effective policy remains a...
Groundwater flow model for Western Chippewa County–Including analysis of water resources related to industrial sand mining and irrigated agriculture
Michael Parsen, Paul F. Juckem, Madeline Gotkowitz, Michael N. Fienen
2019, Wisconsin Geological and NaturalHistory Survey Bulletin B112
A groundwater flow model for western Chippewa County, Wisconsin, was developed by the Wisconsin Geological and Natural History Survey (WGNHS) and the U.S. Geological Survey (USGS) using the computer program MODFLOW. The model is the result of a five-year groundwater study commissioned by Chippewa County in 2012 to evaluate the...
Geohydrology and water quality of the unconsolidated aquifers in the Enfield Creek Valley, town of Enfield, Tompkins County, New York
Benjamin N. Fisher, Paul M. Heisig, William M. Kappel
2019, Scientific Investigations Report 2019-5136
From 2013 to 2018, the U.S. Geological Survey, in cooperation with the Town of Enfield and the Tompkins County Planning Department, studied the unconsolidated aquifer in the Enfield Creek Valley in the town of Enfield, Tompkins County, New York. The valley will likely undergo future development as the population of...
Bottom trawl assessment of Lake Ontario prey fishes
Brian Weidel, Michael J. Connerton, Jeremy Holden
2019, Book chapter, 2018 Annual report
Collaborative Lake Ontario bottom trawl surveys, led by the United States Geological Survey (USGS), provide science and management information for evaluating Fish Community Objectives including predator-prey balance and prey fish community diversity. In 2018, the New York State Department of Environmental Conservation (NYSDEC), Ontario Ministry of Natural Resources and Forestry...
2017 Status of the Lake Ontario Lower Trophic Levels
Kristen T. Holeck, Lars G. Rudstam, Christopher Hotaling, Russ D. McCullough, Dave Lemon, Web Pearsall, Jana Lantry, Mike Connerton, Chris Legard, Steve LaPan, Zy Biesinger, Brian F. Lantry, Brian Weidel
2019, Report, NYSDEC Lake Ontario Annual Report 2019
Significant Findings for Year 2017: 1) Offshore spring total phosphorus (TP) in 2017 was 4.4 µg/L; values remained stable since 2001. Offshore soluble reactive phosphorus (SRP) remained low (1.1 µg/L) in 2017; Apr/May – Oct mean values have been stable in nearshore and offshore habitats since 1998 (range, 0.4 –...
An update of hydrologic conditions and distribution of selected constituents in water, Eastern Snake River Plain aquifer and perched groundwater zones, Idaho National Laboratory, Idaho, emphasis 2016–18
Roy C. Bartholomay, Neil V. Maimer, Gordon W. Rattray, Jason C. Fisher
2019, Scientific Investigations Report 2019-5149
Since 1952, wastewater discharged to infiltration ponds (also called percolation ponds) and disposal wells at the Idaho National Laboratory (INL) has affected water quality in the eastern Snake River Plain (ESRP) aquifer and perched groundwater zones underlying the INL. The U.S. Geological Survey (USGS), in cooperation with the U.S....
Spatially referenced models of streamflow and nitrogen, phosphorus, and suspended-sediment loads in streams of the northeastern United States
Scott W. Ator
2019, Scientific Investigations Report 2019-5118
SPAtially Referenced Regression On Watershed attributes (SPARROW) models were developed to quantify and improve the understanding of the sources, fate, and transport of nitrogen, phosphorus, and suspended sediment in the northeastern United States. Excessive nutrients and suspended sediment from upland watersheds and tributary streams have contributed to ecological and economic...
Spatially referenced models of streamflow and nitrogen, phosphorus, and suspended-sediment transport in streams of the southwestern United States
Daniel R. Wise, David W. Anning, Olivia L. Miller
2019, Scientific Investigations Report 2019-5106
Given the predicted imbalance between water supply and demand in the Southwest region of the United States, and the widespread problems with excessive nutrients and suspended sediment, there is a growing need to quantify current streamflow and water quality conditions throughout the region. Furthermore, current monitoring stations exist at a...
Spatially referenced models of streamflow and nitrogen, phosphorus, and suspended-sediment loads in streams of the midwestern United States
Dale M. Robertson, David A. Saad
2019, Scientific Investigations Report 2019-5114
In this report, SPAtially Referenced Regression On Watershed attributes (SPARROW) models developed to describe long-term (2000–14) mean-annual streamflow, total nitrogen (TN), total phosphorus (TP), and suspended-sediment (SS) transport in streams of the Midwestern part of the United States (the Mississippi River, Great Lakes, and Red River of the North Basins)...
Spatially referenced models of streamflow and nitrogen, phosphorus, and suspended-sediment loads in the southeastern United States
Anne B. Hoos, Victor L. Roland II
2019, Scientific Investigations Report 2019-5135
Spatially Referenced Regression On Watershed attributes (SPARROW) models were applied to describe and estimate mean-annual streamflow and transport of total nitrogen (TN), total phosphorus (TP), and suspended sediment (SS) in streams and delivered to coastal waters of the southeastern United States on the basis of inputs and management practices centered...
Spatially referenced models of streamflow and nitrogen, phosphorus, and suspended-sediment loads in streams of the Pacific region of the United States
Daniel R. Wise
2019, Scientific Investigations Report 2019-5112
Although spatial information describing the supply and quality of surface water is critical for managing water resources for human uses and for ecological health, monitoring is expensive and cannot typically be done over large scales or in all streams or waterbodies. To address the need for such data, the U.S....
Methods for estimating regional skewness of annual peak flows in parts of the Great Lakes and Ohio River Basins, based on data through water year 2013
Andrea G. Veilleux, Daniel M. Wagner
2019, Scientific Investigations Report 2019-5105
Bulletin 17C (B17C) recommends fitting the log-Pearson Type III (LP−III) distribution to a series of annual peak flows at a streamgage by using the method of moments. The third moment, the skewness coefficient (or skew), is important because the magnitudes of annual exceedance probability (AEP) flows estimated by using the...
Groundwater recharge estimates for Maine using a Soil-Water-Balance model—25-year average, range, and uncertainty, 1991 to 2015
Martha G. Nielsen, Stephen M. Westenbroek
2019, Scientific Investigations Report 2019-5125
To address the lack of information on the spatial and temporal variability of recharge to groundwater systems in Maine, a study was initiated in cooperation with the Maine Geological Survey to use the U.S. Geological Survey Soil-Water-Balance model to evaluate annual average potential recharge across the State over a 25-year...
Population and habitat analyses for greater sage-grouse (Centrocercus urophasianus) in the bi-state distinct population segment—2018 update
Peter S. Coates, Mark A. Ricca, Brian G. Prochazka, Shawn T. O’Neil, John P. Severson, Steven R. Mathews, Shawn Espinosa, Scott Gardner, Sherri Lisius, David J. Delehanty
2019, Open-File Report 2019-1149
Executive SummaryThe Bi-State Distinct Population Segment (Bi-State DPS) of greater sage-grouse (Centrocercus urophasianus, hereinafter “sage-grouse”) represents a genetically distinct and geographically isolated population that straddles the border between Nevada and California. The primary threat to these sage-grouse populations is the expansion of single-leaf pinyon (Pinus monophylla) and Utah juniper (Juniperus...
Effects of surface-water use on domestic groundwater availability and quality during drought in the Sierra Nevada foothills, California
Zeno F. Levy, Miranda S. Fram, Kimberly A. Taylor
2019, Fact Sheet 2019-3077
BackgroundApproximately 2 million California residents rely on privately owned domestic wells for drinking water. During the California drought of 2012−16 groundwater levels declined in many parts of the state and wells were deepened in response. Most of the wells deepened during this time were domestic wells that were drilled into...