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Landscapes

Explore our projects on landscapes.
Filter Total Items: 452

From Icefield to Ocean: Glacier Change Impacts to Alaska’s Coastal Ecosystems

The Gulf of Alaska is one of the most productive marine ecosystems on Earth, supporting salmon fisheries that alone provide nearly $1 billion per year in economic benefits to Southeast Alaska. Glaciers are central to many of the area’s natural processes and economic activities, but the rates of glacier loss in Alaska are among the highest on Earth, with a 26-36 percent reduction in total...
From Icefield to Ocean: Glacier Change Impacts to Alaska’s Coastal Ecosystems

From Icefield to Ocean: Glacier Change Impacts to Alaska’s Coastal Ecosystems

The Gulf of Alaska is one of the most productive marine ecosystems on Earth, supporting salmon fisheries that alone provide nearly $1 billion per year in economic benefits to Southeast Alaska. Glaciers are central to many of the area’s natural processes and economic activities, but the rates of glacier loss in Alaska are among the highest on Earth, with a 26-36 percent reduction in total volume
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Integrating Climate and Biological Data into Management Decisions for the Greater Sage-­Grouse and their Habitats

Climate affects both the demographics of the Greater sage-grouse bird and the condition and long-term viability of their habitats, including sage-steppe communities. This project builds on collaboration among federal land managers, state wildlife biologists, scientists, and other organizations to create a long-term framework for implementing adaptive management for the sage-grouse. The...
Integrating Climate and Biological Data into Management Decisions for the Greater Sage-­Grouse and their Habitats

Integrating Climate and Biological Data into Management Decisions for the Greater Sage-­Grouse and their Habitats

Climate affects both the demographics of the Greater sage-grouse bird and the condition and long-term viability of their habitats, including sage-steppe communities. This project builds on collaboration among federal land managers, state wildlife biologists, scientists, and other organizations to create a long-term framework for implementing adaptive management for the sage-grouse. The study
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Linking Climate, Vegetation, and Caribou Dynamics Across the Alaska Region

Caribou populations in Alaska are important to both resident and visiting hunters and provide a large source of income for commercial operators and local communities who provide services to these hunters. Caribou have also provided a traditional staple food source for native Alaskan communities. Moreover, caribou are important prey for wolves and bears and their health and population...
Linking Climate, Vegetation, and Caribou Dynamics Across the Alaska Region

Linking Climate, Vegetation, and Caribou Dynamics Across the Alaska Region

Caribou populations in Alaska are important to both resident and visiting hunters and provide a large source of income for commercial operators and local communities who provide services to these hunters. Caribou have also provided a traditional staple food source for native Alaskan communities. Moreover, caribou are important prey for wolves and bears and their health and population size impact
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Mapping Fresh, Intermediate, Brackish and Saline Marshes in the North Central Gulf of America Coast to Inform Future Projections

Spatial data depicting marsh types (e.g. fresh, intermediate, brackish and saline) for the north-central Gulf of America coast are inconsistent across the region, limiting the ability of conservation planners to model the current and future capacity of the coast to sustain priority species. The goal of this study was to (1) update the resolution of coastal Texas vegetation data to match...
Mapping Fresh, Intermediate, Brackish and Saline Marshes in the North Central Gulf of America Coast to Inform Future Projections

Mapping Fresh, Intermediate, Brackish and Saline Marshes in the North Central Gulf of America Coast to Inform Future Projections

Spatial data depicting marsh types (e.g. fresh, intermediate, brackish and saline) for the north-central Gulf of America coast are inconsistent across the region, limiting the ability of conservation planners to model the current and future capacity of the coast to sustain priority species. The goal of this study was to (1) update the resolution of coastal Texas vegetation data to match that of
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Marshes to Mudflats: Climate Change Effects Along Coastal Estuaries in the Pacific Northwest

Over 50% of commercial and recreationally important fish species depend on coastal wetlands. In the Pacific Northwest, coastal wetlands, where the ocean meets the land, are highly productive areas that support a wealth of wildlife species from salmon to ducks. The tidal marshes, mudflats, and shallow bays of coastal estuaries link marine, freshwater, and terrestrial habitats and provide...
Marshes to Mudflats: Climate Change Effects Along Coastal Estuaries in the Pacific Northwest

Marshes to Mudflats: Climate Change Effects Along Coastal Estuaries in the Pacific Northwest

Over 50% of commercial and recreationally important fish species depend on coastal wetlands. In the Pacific Northwest, coastal wetlands, where the ocean meets the land, are highly productive areas that support a wealth of wildlife species from salmon to ducks. The tidal marshes, mudflats, and shallow bays of coastal estuaries link marine, freshwater, and terrestrial habitats and provide economic
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Modeling and Predicting Future Changes in Snowfall and Snow Cover in Alaska

Snow is extremely important to a wide range of natural processes in Alaska. Snow cover helps regulate the earth’s temperature and stores water on the landscape. As it melts, snow hydrates the soil and replenishes the freshwater supplies of streams and lakes, providing water for vegetation, wildlife, and human activities such as agriculture and electricity generation. Understanding...
Modeling and Predicting Future Changes in Snowfall and Snow Cover in Alaska

Modeling and Predicting Future Changes in Snowfall and Snow Cover in Alaska

Snow is extremely important to a wide range of natural processes in Alaska. Snow cover helps regulate the earth’s temperature and stores water on the landscape. As it melts, snow hydrates the soil and replenishes the freshwater supplies of streams and lakes, providing water for vegetation, wildlife, and human activities such as agriculture and electricity generation. Understanding present and
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Modeling Future Storm Impacts on the Yukon-Kuskokwim Delta

The western coast of Alaska is a remote region, rich in wildlife and providing critical nesting habitat for many of Alaska’s seabirds. It is also home to indigenous communities who rely upon the region’s natural resources to support a traditional lifestyle of hunting, gathering, and fishing. Although the region is frequently subject to extensive inland flooding from Bering Sea storms...
Modeling Future Storm Impacts on the Yukon-Kuskokwim Delta

Modeling Future Storm Impacts on the Yukon-Kuskokwim Delta

The western coast of Alaska is a remote region, rich in wildlife and providing critical nesting habitat for many of Alaska’s seabirds. It is also home to indigenous communities who rely upon the region’s natural resources to support a traditional lifestyle of hunting, gathering, and fishing. Although the region is frequently subject to extensive inland flooding from Bering Sea storms, little is
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Modeling the Effects of Climate Change on Wetlands in the Pacific Northwest

Wetlands provide critical services to natural and human communities alike, forming important wildlife habitat, storing and filtering water, sequestering carbon, and offering opportunities for recreation. Unfortunately, not only are these valuable ecosystems understudied compared to others, but they are also among the most sensitive to climate change. Climate change threatens wetlands by...
Modeling the Effects of Climate Change on Wetlands in the Pacific Northwest

Modeling the Effects of Climate Change on Wetlands in the Pacific Northwest

Wetlands provide critical services to natural and human communities alike, forming important wildlife habitat, storing and filtering water, sequestering carbon, and offering opportunities for recreation. Unfortunately, not only are these valuable ecosystems understudied compared to others, but they are also among the most sensitive to climate change. Climate change threatens wetlands by altering
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Modeling Western Alaska Coastal Hazards

The western coastline of Alaska is highly susceptible to coastal storms, which can cause erosion, flooding, and saltwater storm surge, affecting natural ecosystems, human communities, and commercial activity. Historically, a large buffer of ice along the shoreline has protected this region from some of the more severe effects of coastal storms. However, climate change may not only...
Modeling Western Alaska Coastal Hazards

Modeling Western Alaska Coastal Hazards

The western coastline of Alaska is highly susceptible to coastal storms, which can cause erosion, flooding, and saltwater storm surge, affecting natural ecosystems, human communities, and commercial activity. Historically, a large buffer of ice along the shoreline has protected this region from some of the more severe effects of coastal storms. However, climate change may not only increase the
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Monitoring Thermokarst on the Landscapes of Northern Alaska

Permafrost – the thick layer of permanently frozen soil found in Arctic regions – has been thawing rapidly over the past century due to climate change. When permafrost thaws unevenly, it produces thermokarst landscapes, irregular surfaces of small hills interspersed with hollows. The processes that produce thermokarst can lead to significant changes within the surrounding ecosystems...
Monitoring Thermokarst on the Landscapes of Northern Alaska

Monitoring Thermokarst on the Landscapes of Northern Alaska

Permafrost – the thick layer of permanently frozen soil found in Arctic regions – has been thawing rapidly over the past century due to climate change. When permafrost thaws unevenly, it produces thermokarst landscapes, irregular surfaces of small hills interspersed with hollows. The processes that produce thermokarst can lead to significant changes within the surrounding ecosystems, altering
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Projecting Future Climate Effects on Cottonwood and Willow Seed Dispersal and Tree Regeneration in Western Riparian Forests

Throughout western North America, warming associated with climate change is leading to both earlier spring peak streamflows and earlier seed dispersal, potentially reducing seedling establishment and in turn reducing the quality of riparian (near-river) forests, which provide critical habitat for diverse birds, mammals, reptiles, amphibians, and insects, and food and shade for fish and...
Projecting Future Climate Effects on Cottonwood and Willow Seed Dispersal and Tree Regeneration in Western Riparian Forests

Projecting Future Climate Effects on Cottonwood and Willow Seed Dispersal and Tree Regeneration in Western Riparian Forests

Throughout western North America, warming associated with climate change is leading to both earlier spring peak streamflows and earlier seed dispersal, potentially reducing seedling establishment and in turn reducing the quality of riparian (near-river) forests, which provide critical habitat for diverse birds, mammals, reptiles, amphibians, and insects, and food and shade for fish and other
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Projecting the Future Encroachment of Woody Vegetation into Grasslands of the Northern Great Plains by Simulating Climate Conditions and Possible Management Actions

Maintaining the native prairie lands of the Northern Great Plains (NGP), which provide an important habitat for declining grassland species, requires anticipating the effects of increasing atmospheric carbon dioxide (CO2) concentrations and climate change on the region’s vegetation. Specifically, climate change threatens NGP grasslands by increasing the potential encroachment of native...
Projecting the Future Encroachment of Woody Vegetation into Grasslands of the Northern Great Plains by Simulating Climate Conditions and Possible Management Actions

Projecting the Future Encroachment of Woody Vegetation into Grasslands of the Northern Great Plains by Simulating Climate Conditions and Possible Management Actions

Maintaining the native prairie lands of the Northern Great Plains (NGP), which provide an important habitat for declining grassland species, requires anticipating the effects of increasing atmospheric carbon dioxide (CO2) concentrations and climate change on the region’s vegetation. Specifically, climate change threatens NGP grasslands by increasing the potential encroachment of native woody
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