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Updated: Aug 19, 2025

Using an Automated 3D-tracking System to Record Individual and Shoals of Adult Zebrafish
Published on: December 5, 2013
Zebrafish (Danio rerio) shoaling in light and dark conditions involves a complex interplay between vision and lateral
Shayna-Lee Chaput1, Warren W Burggren2, Peter L Hurd3
1Department of Psychology, University of Alberta, Edmonton T6G 2E9, Alberta, Canada.
Abstract:
We know little about how - or even if in some species - fish shoal in darkness. We hypothesized that 'dark shoaling' occurs in zebrafish and therefore must depend upon lateral line sensory input. Shoaling in groups of five adult zebrafish was analyzed with motion tracking software. We measured average inter-individual distance, time near the arena wall (thigmotaxis zone) and total distance traveled under normal room light, and in near-complete darkness (infrared light at 850 nm). These observations were repeated in fish treated with cobalt chloride (CoCl2), which ablates lateral line function. In untreated controls, dark shoaling was reduced compared to in light, but nonetheless still present. Elimination of lateral line sensory input by CoCl2 treatment similarly reduced, but did not eliminate, shoaling under both light and dark. Our findings indicate that normal zebrafish shoaling in light or dark requires both visual and lateral line inputs, with neither alone sufficient for normal shoaling.

