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Quantitative Modeling

A requirement for managing a species, be it a common native species, a species of conservation concern, or an invasive species, is having some information on its distribution and potential drivers of distribution. Branch scientists have been tackling the question of where these types of species are and where they might be in the future. Focus species are as varied as the invasive tamarisk, Russian olive, Africanized honey bee and nutria to the federally threatened Lesser Prairie chicken and others. These and other species are modeled at a variety of spatial scales, from park or wildlife refuge to global levels. Models use various predictor layers that can include current and future climate layers (near- and long-term projections), remote-sensing derivatives (such as MODIS phenology metrics), land cover, topography, and anthropogenic features.

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Developing Ecological Forecasting Models for Invasive Species

Forecasts of where species might be and what impacts they may have are necessary for management of invasive species. Researchers at FORT are using various approaches to provided needed information to resource managers to combat invasive plants, animals, and disease organisms.
Developing Ecological Forecasting Models for Invasive Species

Developing Ecological Forecasting Models for Invasive Species

Forecasts of where species might be and what impacts they may have are necessary for management of invasive species. Researchers at FORT are using various approaches to provided needed information to resource managers to combat invasive plants, animals, and disease organisms.
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Field of Sagebrush Dreams: Planting and Restoring Functional Sagebrush in Burned Landscapes

Increased wildfire-induced loss of sagebrush in North American shrublands are outpacing natural recovery and leading to substantial habitat loss for sagebrush-obligate species like sage-grouse. The products and information developed for this project will help restoration practitioners, biologists, and land managers evaluate the efficacy of sagebrush restoration approaches as well as their ability...
Field of Sagebrush Dreams: Planting and Restoring Functional Sagebrush in Burned Landscapes

Field of Sagebrush Dreams: Planting and Restoring Functional Sagebrush in Burned Landscapes

Increased wildfire-induced loss of sagebrush in North American shrublands are outpacing natural recovery and leading to substantial habitat loss for sagebrush-obligate species like sage-grouse. The products and information developed for this project will help restoration practitioners, biologists, and land managers evaluate the efficacy of sagebrush restoration approaches as well as their ability...
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Multi-scale Statewide Wyoming Greater Sage-grouse Trends Determined by Population Viability Analysis

USGS scientists and partners investigated sage-grouse population trends in Wyoming and at multiple spatial scales.
Multi-scale Statewide Wyoming Greater Sage-grouse Trends Determined by Population Viability Analysis

Multi-scale Statewide Wyoming Greater Sage-grouse Trends Determined by Population Viability Analysis

USGS scientists and partners investigated sage-grouse population trends in Wyoming and at multiple spatial scales.
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Modeling Seasonal Habitat Requirements and Population Viability for Greater Sage-grouse in Wyoming

USGS has developed Greater Sage-grouse habitat-selection models for the nesting, summer, late brood rearing, and winter life stages in Wyoming to assess habitat quality and responses change across large landscapes.
Modeling Seasonal Habitat Requirements and Population Viability for Greater Sage-grouse in Wyoming

Modeling Seasonal Habitat Requirements and Population Viability for Greater Sage-grouse in Wyoming

USGS has developed Greater Sage-grouse habitat-selection models for the nesting, summer, late brood rearing, and winter life stages in Wyoming to assess habitat quality and responses change across large landscapes.
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