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Filters: Types: Shapefile (X) > partyWithName: U.S. Geological Survey (X) > partyWithName: Ecosystems (X) > partyWithName: U.S. Geological Survey - ScienceBase (X) > Extensions: Shapefile (X) > Categories: Data (X) > partyWithName: Northern Rocky Mountain Science Center (X)

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The grizzly bear distribution boundary represents the estimated geographic extent of occupied range of the Yellowstone grizzly bear population for the period 2008-2022. The distribution boundary was delineated to provide reliable estimations of grizzly bear occupancy throughout time and for use as a monitoring tool in grizzly bear management and conservation.The boundary was delineated by the Interagency Grizzly Bear Study Team (IGBST) using an interpolation method based on grizzly bear VHF telemetry and GPS locations as well as verified observations and signs of grizzly bears inside the Greater Yellowstone Ecosystem during 2008 to 2022.
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The grizzly bear distribution boundary represents the estimated geographic extent of occupied range of the Yellowstone grizzly bear population for the period 2006-2020. The distribution boundary was delineated to provide reliable estimations of grizzly bear occupancy throughout time and for use as a monitoring tool in grizzly bear management and conservation.The boundary was delineated by the Interagency Grizzly Bear Study Team (IGBST) using an interpolation method based on grizzly bear VHF telemetry and GPS locations as well as verified observations and signs of grizzly bears inside the Greater Yellowstone Ecosystem during 2006 to 2020.
False positive occupancy analysis predictions with model uncertainty based on summertime data provided to support the status assessment (SSA) for Myotis septentrionalis (MYSE). The objectives outlined by the Fish and Wildlife Service’s SSA team were to estimate summertime distributions across the entire species range. Statistical analysis included five types of response data requested from the North American Bat Monitoring Program database (NABat): automatically identified stationary acoustic calls, manually vetted stationary acoustic calls, automatically identified mobile acoustic calls, manually vetted mobile acoustic calls, and capture records. Statistical analysis was for the summertime distribution modeling,...
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The Wyoming statewide time-stamped oil and gas wells shapefile was developed to provide a historical perspective of drilling activity for the Wyoming Landscape Conservation Initiative (WLCI). This product approximates start and stop dates for each well in Wyoming based on database attributes. These data originated from the Wyoming Oil and Gas Conservation Commission (WOGCC). Data represent 120 years of oil and gas drilling (1900 to 2020) and will facilitate a landscape-level approach to integrated science-based assessments, resource management, and land-use decision making. Oil and gas data from WOGCC were used in a dataset previously published by Biewick in 2010 (https://pubs.usgs.gov/ds/625/). This product expands...


    map background search result map search result map Rangewide summertime model predictions for Myotis septentrionalis from acoustic and mist net data 2010 to 2019 Distribution of the Yellowstone Grizzly Bear (2006-2020) Wyoming statewide time-stamped oil and gas activity, 1900-2020 Occupied Range of the Yellowstone Grizzly Bear 2008-2022 Occupied Range of the Yellowstone Grizzly Bear 2008-2022 Distribution of the Yellowstone Grizzly Bear (2006-2020) Wyoming statewide time-stamped oil and gas activity, 1900-2020 Rangewide summertime model predictions for Myotis septentrionalis from acoustic and mist net data 2010 to 2019