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Montane Conifer Connectivity of areas of high elevation and high human footprint in the North Pacific Landscape Conservation Cooperative study area. This application provides Montane Conifer Connectivity for 2000 and 2080 (A1B).The three primary geospatial layers used in this analysis were a digital elevation model (DEM), a vegetation layer, and a human footprint layer. Due to the geographic extent of the North Pacific Landscape Conservation Cooperative, digital elevation models from different sources had to be used to create one seamless DEM. The digital elevation models were obtained from the Shuttle Radar Topography Mission (SRTM), the United States Geologic Survey, and the Government of the Yukon Territory....
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The aquifer saturated thickness product is a per-pixel (250 square-meters) model representation of the combined fluid and soil matrix volume of water available in a given area, represented in units of linear feet. The prediction of available water is made using a network of over 9,300 monitoring wells located throughout the High Plains aquifer region. These wells are part of an annually updated long-term water-level monitoring study being conducted by United States Geological Survey hydrologists and other partners (https://ne.water.usgs.gov/ogw/hpwlms/). We used the source well depth-to-water data, as well as information on the base elevation of the aquifer (USGS Report : ofr98-393), surface elevation (NED-DEM),...
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Past analysis has shown that temperature-dependent avian malaria is likely to reduce overall available Hawaiian forest bird habitat with temperature increases. We used a comprehensive database of forest bird sightings (over 42,000 points), the most up to date regional climate projections and state-of-the-art ensemble species distribution models to project shifts in distribution of all Hawaiian forest bird species due to climate change. Our results show that all forest bird species are expected to suffer large range losses by end of this century with single island endemics at a greater risk than more widespread species. Because most species require structurally complex forest habitat that may take decades to develop,...
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Hardware to collect infrared digital imagery during periods of peak vegetative growth to develop a cover map for the Mississippi River floodplain from Minneapolis, Minn. to the Ohio River confluence. This information is being used to identify changes within the basin over the past 10 years, strategically guide biological programs in support of natural resource conservation, and assist decision makers from federal, state, and non-governmental organizations in making science-based decisions within the Mississippi River basin. Images are currently being processed by U.S. Geological Survey. This information will be used to identify changes within the basin over the past 10 years (time since the last systemic imagery...
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This project developed a soil vulnerability index and map indicating where forest cover will be most affected by climate change. Using this map, researchers developed a greater understanding of potential changes in soil moisture and temperature regimes under future climate conditions. They then evaluated how this information could be used to improve vegetation models across the landscape. They compared the results of different modeling approaches to the soil vulnerability map, synthesized the state of knowledge and uncertainty, and introduced management implications for action.The following data sets are included:Soil accumulations for the North Pacific Landscape Conservation Cooperative- northern California, USASoil...


    map background search result map search result map Product: Pacific Northwest Forest Soils, Creating a Soil Vulnerability Index to Identify Drought Sensitive Areas - Spatial Data Mississippi River Remote Sensing Acquisition North Pacific Forest Landscape Corridor and Connectivity Project: Assessing Landscape and Species Vulnerability - Spatial Data Shifting Hawaiian forest bird distribution under climate change and the need to consider novel conservation strategies Aquifer Saturation Thickness 2013 Pacific Connectivity Project North Pacific Forest Landscape Corridor and Connectivity Project: Assessing Landscape and Species Vulnerability - Spatial Data Shifting Hawaiian forest bird distribution under climate change and the need to consider novel conservation strategies Aquifer Saturation Thickness 2013 Mississippi River Remote Sensing Acquisition Product: Pacific Northwest Forest Soils, Creating a Soil Vulnerability Index to Identify Drought Sensitive Areas - Spatial Data Pacific Connectivity Project