ArticleiScience2026
BullFish: Software for an automated stepwise analysis of positional and postural kinematics of zebrafish locomotion.
Article in iScience, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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7 authors.
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Abstract
Zebrafish are a tractable vertebrate model for studying locomotor behavior across development. We applied BullFish, an automated tracking and gait-analysis tool that quantifies macro- and micro-parameters-speed, orientation, tail- and trunk-bend angles, body curvature, stroke symmetry, and postural changes-across ages, sizes, and arbitrary arena shapes. In targeted experiments using a dopaminergic lesion model (6-OHDA) and a fin-amputation model, BullFish binned instantaneous swimming speed and extracted kinematic metrics within each bin (tail-beat frequency and amplitude, burst duration, inter-bout interval, and turn velocity). Dopaminergic loss spared low-speed metrics but reduced high-speed tail-beat frequency and amplitude, shortened burst durations, and decreased high-acceleration bouts-implicating deficits in rapid propulsion. Fin amputation preserved high-speed bursts but altered low-speed control with fewer fine postural corrections-consistent with impaired low-force maneuvering and stability. BullFish also corrected common tracking errors from other tools and delivered consistent, stage-spanning locomotor phenotypes to improve behavioral interpretation in neurobiology and injury studies.
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