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Projects by Region

Each region of the country contains its own unique ecosystems, communities, and cultural values. Regional CASCs work with partners to develop products that address specific climate adaptation needs of wildlife, ecosystems, and people in the states within their footprints. Browse our projects by region below or use our Project Explorer database to explore our science.

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Mapping Effects of Wetland Change on Amphibians in the Upper Midwest

Many amphibian species are highly susceptible to changes in precipitation timing and volume because of their reliance on intermittently flooded surface water pools, which are primarily filled through snowmelt and precipitation runoff. ​With increasing evapotranspiration (i.e. transfer of water from land to the atmosphere) due to climate change, the timing and availability of water in key...
Mapping Effects of Wetland Change on Amphibians in the Upper Midwest

Mapping Effects of Wetland Change on Amphibians in the Upper Midwest

Many amphibian species are highly susceptible to changes in precipitation timing and volume because of their reliance on intermittently flooded surface water pools, which are primarily filled through snowmelt and precipitation runoff. ​With increasing evapotranspiration (i.e. transfer of water from land to the atmosphere) due to climate change, the timing and availability of water in key amphibian
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Midwest Climate Adaptation Science Center Consortium - Hosted by University of Minnesota (2021-2026)

The MW CASC strives to be collaboration-driven by bringing together scientists, natural and cultural resource managers, and members of the public to develop relevant, actionable science for the Midwest region, including Minnesota, Iowa, Missouri, Wisconsin, Illinois, Michigan, Indiana, and Ohio. The MW CASC is a partnership between the U.S. Geological Survey and a consortium made up of 8
Midwest Climate Adaptation Science Center Consortium - Hosted by University of Minnesota (2021-2026)

Midwest Climate Adaptation Science Center Consortium - Hosted by University of Minnesota (2021-2026)

The MW CASC strives to be collaboration-driven by bringing together scientists, natural and cultural resource managers, and members of the public to develop relevant, actionable science for the Midwest region, including Minnesota, Iowa, Missouri, Wisconsin, Illinois, Michigan, Indiana, and Ohio. The MW CASC is a partnership between the U.S. Geological Survey and a consortium made up of 8
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Native and Invasive Bivalves in the Pacific Northwest: Co-occurrence, Habitat Associations and Potential Competition in the Face of Climate Change

Native mussels are in precipitous decline across North America. As part of the Confederated Tribes of the Umatilla Indian Reservation’s (CTUIR) First Foods management framework that places significant value on the cultural importance of traditional food resources, they have been identified as a top conservation priority in the Pacific Northwest. Freshwater mussels are a vital component...
Native and Invasive Bivalves in the Pacific Northwest: Co-occurrence, Habitat Associations and Potential Competition in the Face of Climate Change

Native and Invasive Bivalves in the Pacific Northwest: Co-occurrence, Habitat Associations and Potential Competition in the Face of Climate Change

Native mussels are in precipitous decline across North America. As part of the Confederated Tribes of the Umatilla Indian Reservation’s (CTUIR) First Foods management framework that places significant value on the cultural importance of traditional food resources, they have been identified as a top conservation priority in the Pacific Northwest. Freshwater mussels are a vital component of river
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Next Generation Fire Modeling to Inform the Management of Climate and Fire Driven Ecological Transformations in the Rio Grande Basin

The warming climate combined with a century of fuel build up (i.e. burnable plant materials found in the forest) due to fire suppression are driving megafires that threaten life and property and are severely altering ecosystems. Many of these fires are converting large areas of forest to shrub fields or grasslands, termed “ecological transformations.” Although uncharacteristically severe...
Next Generation Fire Modeling to Inform the Management of Climate and Fire Driven Ecological Transformations in the Rio Grande Basin

Next Generation Fire Modeling to Inform the Management of Climate and Fire Driven Ecological Transformations in the Rio Grande Basin

The warming climate combined with a century of fuel build up (i.e. burnable plant materials found in the forest) due to fire suppression are driving megafires that threaten life and property and are severely altering ecosystems. Many of these fires are converting large areas of forest to shrub fields or grasslands, termed “ecological transformations.” Although uncharacteristically severe fires are
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Promoting Peer-to-Peer Knowledge Exchange on Climate and Fire Adaptation in the Southwestern United States

The Southwest Fire Climate Adaptation Partnership (SW FireCAP) is working to advance fire and climate adaptation in the southwestern U.S. Focused on cross-organizational collaboration and leveraging resources, the partnership facilitates climate adaptation planning by “sharing Indigenous and Western knowledge perspectives, being inclusive, and building trust.” The Collaborative...
Promoting Peer-to-Peer Knowledge Exchange on Climate and Fire Adaptation in the Southwestern United States

Promoting Peer-to-Peer Knowledge Exchange on Climate and Fire Adaptation in the Southwestern United States

The Southwest Fire Climate Adaptation Partnership (SW FireCAP) is working to advance fire and climate adaptation in the southwestern U.S. Focused on cross-organizational collaboration and leveraging resources, the partnership facilitates climate adaptation planning by “sharing Indigenous and Western knowledge perspectives, being inclusive, and building trust.” The Collaborative Conservation and
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Providing a Climate Science Foundation for Updating the Integrated Rangeland Fire Management Strategy Actionable Science Plan

The long-term success of management efforts in sagebrush habitats are increasingly complicated by the impacts of a changing climate throughout the western United States. These complications are most evident in the ongoing challenges of drought and altered rangeland fire regimes resulting from the establishment of nonnative annual grasses. The Integrated Rangeland Fire Management Strategy
Providing a Climate Science Foundation for Updating the Integrated Rangeland Fire Management Strategy Actionable Science Plan

Providing a Climate Science Foundation for Updating the Integrated Rangeland Fire Management Strategy Actionable Science Plan

The long-term success of management efforts in sagebrush habitats are increasingly complicated by the impacts of a changing climate throughout the western United States. These complications are most evident in the ongoing challenges of drought and altered rangeland fire regimes resulting from the establishment of nonnative annual grasses. The Integrated Rangeland Fire Management Strategy
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Putting the Sampling Design to Work: Enhancing Species Monitoring Programs in the Face of Climate Change

Studying the impacts of climate on important ecological responses is a recent priority of monitoring programs throughout the Northeast. Established sampling protocols for data collection, whether to inform estimates of species abundance or occupancy, were designed to evaluate the effects of non-climate stressors (e.g., habitat conversion) and related management actions. Traditional...
Putting the Sampling Design to Work: Enhancing Species Monitoring Programs in the Face of Climate Change

Putting the Sampling Design to Work: Enhancing Species Monitoring Programs in the Face of Climate Change

Studying the impacts of climate on important ecological responses is a recent priority of monitoring programs throughout the Northeast. Established sampling protocols for data collection, whether to inform estimates of species abundance or occupancy, were designed to evaluate the effects of non-climate stressors (e.g., habitat conversion) and related management actions. Traditional modeling
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Restoration Based on Cost-Benefit Optimization: A Grasslands Pilot Study

Project Overview: Ecological restoration is key for meeting global biodiversity conservation goals, but limited budgets make it challenging to decide where efforts will have the greatest impact. Scientists supported by this project developed a spatially explicit modeling framework that integrates land-use history, species distributions, and economic costs to optimize restoration site...
Restoration Based on Cost-Benefit Optimization: A Grasslands Pilot Study

Restoration Based on Cost-Benefit Optimization: A Grasslands Pilot Study

Project Overview: Ecological restoration is key for meeting global biodiversity conservation goals, but limited budgets make it challenging to decide where efforts will have the greatest impact. Scientists supported by this project developed a spatially explicit modeling framework that integrates land-use history, species distributions, and economic costs to optimize restoration site selection
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Science to Support Marsh Conservation and Management Decisions in the Northeastern United States

Coastal resource and infrastructure managers face rapidly mounting environmental challenges. Increases in sea levels, decaying or outdated infrastructure, compound flooding from ocean storm surges and river runoff, and temperature and moisture extremes are all increasing the vulnerability of natural habitats, public, private, and commercial infrastructure, and community health and...
Science to Support Marsh Conservation and Management Decisions in the Northeastern United States

Science to Support Marsh Conservation and Management Decisions in the Northeastern United States

Coastal resource and infrastructure managers face rapidly mounting environmental challenges. Increases in sea levels, decaying or outdated infrastructure, compound flooding from ocean storm surges and river runoff, and temperature and moisture extremes are all increasing the vulnerability of natural habitats, public, private, and commercial infrastructure, and community health and functionality
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South Fork Nooksack River Engineered Logjam Effectiveness Project: Are Engineered Logjams Creating Cool-Water Refuges for Pacific Salmon on a Thermally Impaired River?

Pacific salmon need cold water and quality habitat to survive. As climate change continues to increase river temperatures, effective methods to restore cool-water refuges and logjam habitats need to be determined. Many salmon habitat restoration projects in the Pacific Northwest have built engineered logjams (ELJs) to create deep, cool pools and reconnect rivers to floodplains to...
South Fork Nooksack River Engineered Logjam Effectiveness Project: Are Engineered Logjams Creating Cool-Water Refuges for Pacific Salmon on a Thermally Impaired River?

South Fork Nooksack River Engineered Logjam Effectiveness Project: Are Engineered Logjams Creating Cool-Water Refuges for Pacific Salmon on a Thermally Impaired River?

Pacific salmon need cold water and quality habitat to survive. As climate change continues to increase river temperatures, effective methods to restore cool-water refuges and logjam habitats need to be determined. Many salmon habitat restoration projects in the Pacific Northwest have built engineered logjams (ELJs) to create deep, cool pools and reconnect rivers to floodplains to replenish cool
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State of the Science in Streamflow Modeling in the North Central Region to Address Partner Needs for Water Availability Under Drought Conditions

Land and water managers often rely on hydrological models to make informed management decisions. Understanding water availability in streams, rivers, and reservoirs during high demand periods that coincide with seasonal low flows can affect how water managers plan for its distribution for human consumption while sustaining aquatic ecosystems. Substantial advancement in hydrological...
State of the Science in Streamflow Modeling in the North Central Region to Address Partner Needs for Water Availability Under Drought Conditions

State of the Science in Streamflow Modeling in the North Central Region to Address Partner Needs for Water Availability Under Drought Conditions

Land and water managers often rely on hydrological models to make informed management decisions. Understanding water availability in streams, rivers, and reservoirs during high demand periods that coincide with seasonal low flows can affect how water managers plan for its distribution for human consumption while sustaining aquatic ecosystems. Substantial advancement in hydrological modeling has
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Supporting U.S. Fish and Wildlife Service’s Species Status Assessments Efforts with Climate Scenario Planning Tools

A rapidly changing climate during this century poses a high risk for impacts to ecosystems, biodiversity and traditional livelihoods. A better understanding of how climate change might alter temperature, precipitation, heat stress, water availability and other extreme weather metrics in the coming century would be useful to natural resource managers at the U.S. Fish & Wildlife Service in...
Supporting U.S. Fish and Wildlife Service’s Species Status Assessments Efforts with Climate Scenario Planning Tools

Supporting U.S. Fish and Wildlife Service’s Species Status Assessments Efforts with Climate Scenario Planning Tools

A rapidly changing climate during this century poses a high risk for impacts to ecosystems, biodiversity and traditional livelihoods. A better understanding of how climate change might alter temperature, precipitation, heat stress, water availability and other extreme weather metrics in the coming century would be useful to natural resource managers at the U.S. Fish & Wildlife Service in the North
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