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Filters: Extensions: Budget (X) > partyWithName: Great Lakes Restoration Initiative (X) > partyWithName: U.S. Fish and Wildlife Service (X)

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Land transformations occurring from energy development and agrarian use have altered the natural connectivity of fish communities inhabiting prairie waterways. The nation’s prairie waterways are obstructed by thousands of barriers that include road culverts, irrigation diversions, and dams. Connectivity is essential for the long term viability of aquatic species. One of the most promising adaptive management strategies for addressing impacts to aquatic systems by climate change and other landscape stressors is increasing connectivity. The purpose of this research is to characterize swimming abilities of three northern plains fish species; the sauger, the longnose dace, and the fathead minnow. The results of the...
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Completion of the National Wildlife Inventory has been identified as a top science priority for the Upper Midwest and Great Lakes-LCC (UMGL). Some areas of Minnesota and Wisconsin still have not been mapped to NWI standards. Completion of NWI is integral to developing geospatial models based on landscape-level land use. Completion of NWI will also aid in monitoring of wetlands to assess effects of climate change. Funding for this project has been leveraged with several other larger projects to improve digital wetland mapping infrastructure for Michigan, Minnesota and Wisconsin. This project is targeting a portions of Wisconsin, at least six counties, for digital conversion and updating of Wetland Inventory maps....
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Climate change is expected to alter the distributions and community composition of stream fishes in the Great Lakes region in the 21st century, in part as a result of altered hydrological systems (stream temperature, streamflow, and habitat). Resource managers need information and tools to understand where fish species and stream habitats are expected to change under future conditions. Fish sample collections and environmental variables from multiple sources across the United States Great Lakes Basin were integrated and used to develop empirical models to predict fish species occurrence under present-day climate conditions. Random Forests models were used to predict the probability of occurrence of 13 lotic fish...
Categories: Data, Project; Types: Downloadable, Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service, Shapefile; Tags: 2011, 2011, 2012, 2012, 2013, All tags...
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Great Lakes coastal wetlands provide critical habitat for many species of birds, mammals, reptiles, and amphibians, and provide essential spawning and nursery habitat for many fish species of ecologic and economic importance. Additionally, coastal wetlands trap, process, and retain nutrients and sediment. Unfortunately, half of the coastal wetland area that was present before European settlement has been converted to other land uses and many remaining wetlands are impacted by invasive species, fragmentation, nutrient loading, and hydrologic manipulation. Because of their ecological value and the extensive degradation that has occurred in coastal wetlands, interest in protection and restoration has increased dramatically...
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The Nature Conservancy - Great Lakes Program is leading the development of a scalable (Great Lakes wide, individual lake basin, to coastal reach within a lake basin) rule-based spatial model for ranking the relative importance of coastal lands and waters as habitat for migrating birds. Results will guide conservation actions including land acquisition, land and water management and restoration, and development of wind energy facilities. Specifically, the team will: 1) refine, create and integrate migratory bird stopover habitat models which depict the distribution of potential stopover sites along or near the shorelines of Lakes Michigan, Huron, Erie, and Ontario; and, 2) develop an online portal that will deliver...
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Mayflies (Ephemeroptera), stoneflies (Plecoptera), and caddisflies (Trichoptera) (a.k.a. EPT taxa) are the most environmentally sensitive of freshwater insects. They are utilized the world over as indicators of water quality in flowing waters. Their decline has been documented in Asia, Europe, and North America. A 220,321 record dataset of new and museum EPT specimen records covering much of the Midwest and Maximum Entropy (Maxent) software were used construct to current and future, climate influenced distribution models. Nearly 100 physical and historic vegetation variables and 9 BIOCLIM variables derived from downscaled climate data for the region were employed in this process. A total of 426 EPT species were...
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Waterfowl are ecologically, culturally, and economically important and their annual and long-term distributions in North America can substantially impact ecological relationships and have economic impacts. In Mississippi, Arkansas and Louisiana alone, recent annual sales of Federal Duck Stamps equal $2.4 million. An intensive study in Mississippi estimated the annual total economic impact of waterfowl hunting in that state was $86.8 million. North American waterfowl number in the millions, use a diversity of aquatic and terrestrial foraging niches, and can feed at rates capable of depleting local food resources. In recent years, waterfowl appear to be wintering at more northern latitudes. Sustained northern...


    map background search result map search result map On-a-wing and a (GIS) Layer: Prioritizing migratory bird habitat along Great Lakes shoreline Regional decision support tool for identifying vulnerabilities of riverine habitat and fishes to climate change Moderization of National Wetlands Inventory (NWI) mapping Predicting climate change effects on riverine aquatic insects in the Upper Midwest Maintaining migratory pathways of imperiled Large River and Small Stream Fishes in the Face of Climate Change and Energy Development Integrated models for estimating influences of climate change on waterfowl  populations, waterfowl habitat, and hunter opportunity and demographics A decision support system for prioritizing protection & restoration of Great Lakes coastal wetlands A decision support system for prioritizing protection & restoration of Great Lakes coastal wetlands Moderization of National Wetlands Inventory (NWI) mapping Maintaining migratory pathways of imperiled Large River and Small Stream Fishes in the Face of Climate Change and Energy Development On-a-wing and a (GIS) Layer: Prioritizing migratory bird habitat along Great Lakes shoreline Regional decision support tool for identifying vulnerabilities of riverine habitat and fishes to climate change Predicting climate change effects on riverine aquatic insects in the Upper Midwest Integrated models for estimating influences of climate change on waterfowl  populations, waterfowl habitat, and hunter opportunity and demographics