Clint Muhlfeld, Ph.D.
I am a Research Aquatic Ecologist for the USGS Northern Rocky Mountain Science Center stationed in Glacier National Park.
Research interests
I specialize in aquatic ecology, fisheries biology, ecohydrology, and conservation biology. My research focuses on understanding the complex interactions between aquatic species and their environments to guide conservation and management of freshwater fisheries and ecosystems. I focus on how human-driven stressors—such as drought, invasive species, and habitat degradation—impact native trout, valuable recreational fisheries, and freshwater ecosystems, particularly in the northern Rocky Mountains of the United States.
My research addresses various scientific and conservation issues, including:
- Predicting the impacts of environmental changes on native trout and their freshwater habitats
- Evaluating the effects of invasive species on native fishes and ecosystem health
- Conducting ecohydrological assessments of drought and water management impacts
- Investigating life history and genetic diversity of native salmonids
- Assessing the status, threats, and conservation of threatened species to inform management needs
I am passionate about multidisciplinary science collaboration and enjoy mentoring graduate students in fisheries and freshwater ecology. I also contribute to regional, national, and international science teams focused on transboundary river management and the sustainable use of freshwater resources. My ultimate goal is to conserve native species and ecosystems for future generations through research-informed management and education.
Education and Certifications
Ph.D. 2008. Fish and Wildlife Biology, Montana State University, Bozeman
M.S. 1999. Fishery Resources, University of Idaho, Moscow
B.S. 1994. Aquatic Biology, University of Montana, Missoula; University of Maine, Orono
Science and Products
Predicting climate change impacts on river ecosystems and salmonids across the Pacific Northwest: Combining vulnerability modeling, landscape genomics, and economic evaluations for conservation
Genetic status and distribution of native westslope cutthroat trout in Glacier National Park
Evolutionary mechanisms influencing the spread of hybridization: genomics, fitness and dispersal
Using the past as a prelude to the future to assess climate effects on native trout across the United States
Predicting climate change effects on aquatic ecosystems in the Crown of the Continent
Assessing the impacts of mining in the Transboundary Flathead and Kootenai River systems
Species invasion progressively disrupts the trophic structure of native food webs Species invasion progressively disrupts the trophic structure of native food webs
Testing a generalizable machine learning workflow for aquatic invasive species on Rainbow Trout (Oncorhynchus mykiss) in northwest Montana Testing a generalizable machine learning workflow for aquatic invasive species on Rainbow Trout (Oncorhynchus mykiss) in northwest Montana
Influence of water temperature and biotic interactions on the distribution of westslope cutthroat trout (Oncorhynchus clarkii lewisi) in a population stronghold under climate change Influence of water temperature and biotic interactions on the distribution of westslope cutthroat trout (Oncorhynchus clarkii lewisi) in a population stronghold under climate change
Hybridization alters growth and migratory life-history expression of native trout Hybridization alters growth and migratory life-history expression of native trout
An interactive data visualization framework for exploring geospatial environmental datasets and model predictions An interactive data visualization framework for exploring geospatial environmental datasets and model predictions
Detecting population declines via monitoring the effective number of breeders (Nb) Detecting population declines via monitoring the effective number of breeders (Nb)
Non-USGS Publications**
**Disclaimer: The views expressed in Non-USGS publications are those of the author and do not represent the views of the USGS, Department of the Interior, or the U.S. Government.
Science and Products
Predicting climate change impacts on river ecosystems and salmonids across the Pacific Northwest: Combining vulnerability modeling, landscape genomics, and economic evaluations for conservation
Genetic status and distribution of native westslope cutthroat trout in Glacier National Park
Evolutionary mechanisms influencing the spread of hybridization: genomics, fitness and dispersal
Using the past as a prelude to the future to assess climate effects on native trout across the United States
Predicting climate change effects on aquatic ecosystems in the Crown of the Continent
Assessing the impacts of mining in the Transboundary Flathead and Kootenai River systems
Species invasion progressively disrupts the trophic structure of native food webs Species invasion progressively disrupts the trophic structure of native food webs
Testing a generalizable machine learning workflow for aquatic invasive species on Rainbow Trout (Oncorhynchus mykiss) in northwest Montana Testing a generalizable machine learning workflow for aquatic invasive species on Rainbow Trout (Oncorhynchus mykiss) in northwest Montana
Influence of water temperature and biotic interactions on the distribution of westslope cutthroat trout (Oncorhynchus clarkii lewisi) in a population stronghold under climate change Influence of water temperature and biotic interactions on the distribution of westslope cutthroat trout (Oncorhynchus clarkii lewisi) in a population stronghold under climate change
Hybridization alters growth and migratory life-history expression of native trout Hybridization alters growth and migratory life-history expression of native trout
An interactive data visualization framework for exploring geospatial environmental datasets and model predictions An interactive data visualization framework for exploring geospatial environmental datasets and model predictions
Detecting population declines via monitoring the effective number of breeders (Nb) Detecting population declines via monitoring the effective number of breeders (Nb)
Non-USGS Publications**
**Disclaimer: The views expressed in Non-USGS publications are those of the author and do not represent the views of the USGS, Department of the Interior, or the U.S. Government.