Casey A. Pennock
Environmental Science · The Ohio State University
Publications
51
Citations
721
Est. group size
~1
Recurring co-author estimate
Active years
11
Publishing since 2016
Casey A. Pennock studies freshwater fish ecology, focusing on how river and reservoir habitats, flow, and human-caused fragmentation (like dams) affect native and invasive fish populations, especially in dryland and desert river systems in the western United States. Much of the work supports conservation efforts for endangered species such as the razorback sucker, examining movement, migration, habitat restoration, and the impacts of invasive fishes like channel catfish and paddlefish competitors.
Publication output rose to a peak around 2020-2022 (6-7 papers/year) and has since settled into a steadier pace of about 4-5 papers per year through 2025-2026.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Invasion potential of nonnative fishes through a large western dam into an iconic and vulnerable ecosystem
Hydrobiologia · 2026
- Data and code from: Spatiotemporal environmental gradients shape early life stage fish densities, assemblage structure, and growth in river-reservoir ecosystems
Open MIND · 2026
- Spatiotemporal environmental gradients shape early life stage fish densities, assemblage structure, and growth in river–reservoir ecosystems
Canadian Journal of Fisheries and Aquatic Sciences · 2026
- Bank‐dwelling beavers contribute to the wood regime in a dryland river
Ecology · 2026
- Rapid recovery of an arctic lake ecosystem from a pulse disturbance caused by thermokarst failure
Oecologia · 2025
- The effect of turbidity on foraging by prerostrum juvenile Paddlefish
Transactions of the American Fisheries Society · 2025
- Shrinking channels, growing threats: Habitat degradation from channel narrowing and invasive vegetation in three dryland rivers
Journal of Environmental Management · 2025
- Using distribution and movement of invasive channel catfish Ictalurus punctatus in the San Juan River to inform removal efforts
Research Square · 2025
- Movement patterns of a small-bodied minnow suggest nomadism in a fragmented, desert river
Movement Ecology · 2024
- Wood you believe it? Experimental addition of nonnative wood enhances instream habitat for native dryland fishes
River Research and Applications · 2024
- Capture–translocation restores spawning migration connectivity of Razorback Suckers in the fragmented San Juan River
Transactions of the American Fisheries Society · 2024
- Translocation in a fragmented river provides demographic benefits for imperiled fishes
Ecosphere · 2024
- Density‐dependent processes and population dynamics of native sculpin in a mountain river
Ecology Of Freshwater Fish · 2023
- If you build it, will they pass? A systematic evaluation of fish passage efficiency for three large-bodied warm-water fishes
Canadian Journal of Fisheries and Aquatic Sciences · 2023
- Water temperature predicts razorback sucker Xyrauchen texanus spawning migrations
Environmental Biology of Fishes · 2023
- Transactions of the American Fisheries Society×5
- Canadian Journal of Fisheries and Aquatic Sciences×3
- North American Journal of Fisheries Management×3
- River Research and Applications×3
- Freshwater Biology×3
- Brandon K. Peoples
Environmental Science · Purdue University West Lafayette
- Reuben R. Goforth
Environmental Science · Purdue University West Lafayette
- Christopher A. Cheek
Environmental Science · Purdue University West Lafayette
- S. Mažeika P. Sullivan
Environmental Science · The Ohio State University
- Richard R. Budnik
Environmental Science · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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