Departments of Developmental Biology and Neuroscience, Washington University in St. Louis, St. Louis, MO, United States.
Front Neural Circuits. 2023 Feb 1;17:1087993. doi: 10.3389/fncir.2023.1087993. eCollection 2023.
A key challenge for neural systems is to extract relevant information from the environment and make appropriate behavioral responses. The larval zebrafish offers an exciting opportunity for studying these sensing processes and sensory-motor transformations. Prey hunting is an instinctual behavior of zebrafish that requires the brain to extract and combine different attributes of the sensory input and form appropriate motor outputs. Due to its small size and transparency the larval zebrafish brain allows optical recording of whole-brain activity to reveal the neural mechanisms involved in prey hunting and capture. In this review we discuss how the larval zebrafish brain processes visual information to identify and locate prey, the neural circuits governing the generation of motor commands in response to prey, how hunting behavior can be modulated by internal states and experience, and some outstanding questions for the field.
神经系统面临的一个关键挑战是从环境中提取相关信息并做出适当的行为反应。幼体斑马鱼为研究这些感知过程和感觉运动转换提供了一个令人兴奋的机会。捕食是斑马鱼的一种本能行为,它需要大脑提取和组合感觉输入的不同属性,并形成适当的运动输出。由于幼体斑马鱼的体型小且透明,因此大脑允许对整个大脑活动进行光学记录,从而揭示参与捕食和捕获的神经机制。在这篇综述中,我们讨论了幼体斑马鱼大脑如何处理视觉信息以识别和定位猎物,控制响应猎物产生运动指令的神经回路,以及内部状态和经验如何调节捕食行为,以及该领域的一些悬而未决的问题。