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Light-dependent activity of deepwater sculpin (Myoxocephalus thompsonii) across substrates with and without predation risk

April 28, 2026

Light availability strongly influences predator–prey interactions in deepwater ecosystems, where visual constraints shape both foraging success and prey behavior. The behavioral response of deepwater sculpin (Myoxocephalus thompsonii) to siscowet lake trout (Salvelinus namaycush siscowet) was studied under ecologically relevant light intensities spanning several orders of magnitude typical of daytime downwelling light in the 20–100 m depth range of Lake Superior. Trials were conducted over varying substrates (gravel, sand, and black fabric). Deepwater sculpin showed a significant preference for gravel over sand and black fabric. In the absence of siscowet, sculpin movement frequency increased as light intensity decreased. Sculpin reaction distance to siscowet was influenced by both light and substrate. Reaction distance was shortest at low light intensities, peaked at intermediate light intensities (3.05 × 10⁹ to 

Publication Year 2026
Title Light-dependent activity of deepwater sculpin (Myoxocephalus thompsonii) across substrates with and without predation risk
DOI 10.1007/s10641-026-01849-1
Authors Trevor D. Keyler, T. R. Hrabik, N. Franta, S. Gartner, Owen T. Gorman
Publication Type Article
Publication Subtype Journal Article
Series Title Environmental Biology of Fishes
Index ID 70279669
Record Source USGS Publications Warehouse
USGS Organization Great Lakes Science Center
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