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Wildlife Disease and One Health

Filter Total Items: 36

USGS Wild Bird Avian Influenza Program – Studies from Endemic Regions of Eurasia

This project focuses on tracking wild birds throughout Eurasia via satellite telemetry to better understand their spatiotemporal movement patterns, relationship to domestic birds, and potential role in the spread, persistence, and amplification of avian influenza viruses.
USGS Wild Bird Avian Influenza Program – Studies from Endemic Regions of Eurasia

USGS Wild Bird Avian Influenza Program – Studies from Endemic Regions of Eurasia

This project focuses on tracking wild birds throughout Eurasia via satellite telemetry to better understand their spatiotemporal movement patterns, relationship to domestic birds, and potential role in the spread, persistence, and amplification of avian influenza viruses.
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Avian Influenza Research

Since Public Law 109-148, USGS has partnered with state and federal agencies to conduct science to support the national response to highly pathogenic avian influenza (HPAI). In 2014, the first reports of HPAI in US wild birds came from USGS cause-of-death investigations confirmed by the USDA.
Avian Influenza Research

Avian Influenza Research

Since Public Law 109-148, USGS has partnered with state and federal agencies to conduct science to support the national response to highly pathogenic avian influenza (HPAI). In 2014, the first reports of HPAI in US wild birds came from USGS cause-of-death investigations confirmed by the USDA.
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Avian Influenza Host Movement Ecology

Understanding disease systems requires an understanding of the basic ecology of host species. USGS is involved in global efforts to explore the movements of bird species that are hosts of avian influenza as well as the potential impacts of changing landscapes on avian influenza.
Avian Influenza Host Movement Ecology

Avian Influenza Host Movement Ecology

Understanding disease systems requires an understanding of the basic ecology of host species. USGS is involved in global efforts to explore the movements of bird species that are hosts of avian influenza as well as the potential impacts of changing landscapes on avian influenza.
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Using Global Telemetry to Understand Avian Movement and Migration

USGS researchers are collaborating with partners around the globe to leverage new and existing telemetry data to answer broad scale questions about factors influencing avian movement and migration.
Using Global Telemetry to Understand Avian Movement and Migration

Using Global Telemetry to Understand Avian Movement and Migration

USGS researchers are collaborating with partners around the globe to leverage new and existing telemetry data to answer broad scale questions about factors influencing avian movement and migration.
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Avian Influenza Viral Pathogenicity

USGS is collaborating with numerous partner institutions to explore susceptibility and pathogenesis of relevant avian influenza strains in waterfowl species with special emphasis on sea ducks and diving ducks.
Avian Influenza Viral Pathogenicity

Avian Influenza Viral Pathogenicity

USGS is collaborating with numerous partner institutions to explore susceptibility and pathogenesis of relevant avian influenza strains in waterfowl species with special emphasis on sea ducks and diving ducks.
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Identifying Spatial and Temporal Trends in Avian Influenza Prevalence in Wild Waterfowl Across the United States

USGS researchers are at the forefront of building and maintaining datasets that represent the spatial and temporal patterns in avian influenza virus prevalence in wild birds, which is critical information used to estimate transmission risk to domestic poultry.
Identifying Spatial and Temporal Trends in Avian Influenza Prevalence in Wild Waterfowl Across the United States

Identifying Spatial and Temporal Trends in Avian Influenza Prevalence in Wild Waterfowl Across the United States

USGS researchers are at the forefront of building and maintaining datasets that represent the spatial and temporal patterns in avian influenza virus prevalence in wild birds, which is critical information used to estimate transmission risk to domestic poultry.
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Deriving Spatial and Temporal Waterfowl Inputs for Disease Risk Modeling

USGS is creating spatially and temporally explicit inputs to improve avian influenza transmission risk modeling. This project places special emphasis on wild bird distribution and abundance models as well as avian influenza prevalence models.
Deriving Spatial and Temporal Waterfowl Inputs for Disease Risk Modeling

Deriving Spatial and Temporal Waterfowl Inputs for Disease Risk Modeling

USGS is creating spatially and temporally explicit inputs to improve avian influenza transmission risk modeling. This project places special emphasis on wild bird distribution and abundance models as well as avian influenza prevalence models.
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Developing Waterfowl Distribution and Abundance Models to Inform Avian Influenza Transmission Risk

USGS researchers are developing novel methods to improve our understanding of waterfowl distributions and abundance across the United States to inform a variety of ongoing disease studies. Understanding the distribution of wild waterfowl is a critical component to assessing avian influenza transmission risks across the landscape.
Developing Waterfowl Distribution and Abundance Models to Inform Avian Influenza Transmission Risk

Developing Waterfowl Distribution and Abundance Models to Inform Avian Influenza Transmission Risk

USGS researchers are developing novel methods to improve our understanding of waterfowl distributions and abundance across the United States to inform a variety of ongoing disease studies. Understanding the distribution of wild waterfowl is a critical component to assessing avian influenza transmission risks across the landscape.
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Using Telemetry to Understand Overlap in Habitat Use Between Waterfowl and Agricultural Birds in North America

USGS researchers are using telemetry to improve our understanding of how wild birds move throughout their environments and the potential implications for disease transmission within and to domestic poultry.
Using Telemetry to Understand Overlap in Habitat Use Between Waterfowl and Agricultural Birds in North America

Using Telemetry to Understand Overlap in Habitat Use Between Waterfowl and Agricultural Birds in North America

USGS researchers are using telemetry to improve our understanding of how wild birds move throughout their environments and the potential implications for disease transmission within and to domestic poultry.
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Understanding Avian Influenza Infection and Movement Behavior of Wild Birds

This project focuses on improving our understanding of how current and previous infection with avian influenza viruses impact the movement ecology of wild bird species.
Understanding Avian Influenza Infection and Movement Behavior of Wild Birds

Understanding Avian Influenza Infection and Movement Behavior of Wild Birds

This project focuses on improving our understanding of how current and previous infection with avian influenza viruses impact the movement ecology of wild bird species.
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Investigating Blotchy Bass Syndrome in Black Basses (Micropterus spp)

USGS is studying the spread and effects of “blotchy bass syndrome” on black basses ( Micropterus spp). USGS and state agencies have partnered with citizen scientists and recreational organizations to create a continent-wide biosurveillance network to monitor the syndrome.
Investigating Blotchy Bass Syndrome in Black Basses (Micropterus spp)

Investigating Blotchy Bass Syndrome in Black Basses (Micropterus spp)

USGS is studying the spread and effects of “blotchy bass syndrome” on black basses ( Micropterus spp). USGS and state agencies have partnered with citizen scientists and recreational organizations to create a continent-wide biosurveillance network to monitor the syndrome.
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Research to understand SARS-CoV-2 risks for wildlife

Multiple research endeavors at the USGS National Wildlife Health Center are ongoing to help assess the possible impacts of SARS-CoV-2 on wildlife.
Research to understand SARS-CoV-2 risks for wildlife

Research to understand SARS-CoV-2 risks for wildlife

Multiple research endeavors at the USGS National Wildlife Health Center are ongoing to help assess the possible impacts of SARS-CoV-2 on wildlife.
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