English

Evaluating Evasion Strategies in Zebrafish Larvae

Quantitative Methods 2023-02-22 v1 Fluid Dynamics Populations and Evolution Applications

Abstract

An effective evasion strategy allows prey to survive encounters with predators. Prey are generally thought to escape in a direction that is either random or serves to maximize the minimum distance from the predator. Here we introduce a comprehensive approach to determine the most likely evasion strategy among multiple hypotheses and the role of biomechanical constraints on the escape response of prey fish. Through a consideration of six strategies with sensorimotor noise and previous kinematic measurements, our analysis shows that zebrafish larvae generally escape in a direction orthogonal to the predator's heading. By sensing only the predator's heading, this orthogonal strategy maximizes the distance from fast-moving predators, and, when operating within the biomechanical constraints of the escape response, it provides the best predictions of prey behavior among all alternatives. This work demonstrates a framework for resolving the strategic basis of evastion in predator-prey interactions, which could be applied to a broad diversity of animals.

Keywords

Cite

@article{arxiv.2301.02661,
  title  = {Evaluating Evasion Strategies in Zebrafish Larvae},
  author = {Yusheng Jiao and Brendan Colvert and Yi Man and Matthew J. McHenry and Eva Kanso},
  journal= {arXiv preprint arXiv:2301.02661},
  year   = {2023}
}

Comments

9 pages, 5 figures

R2 v1 2026-06-28T08:05:28.992Z