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斑马鱼视觉系统:从回路到行为。

The Zebrafish Visual System: From Circuits to Behavior.

机构信息

Developmental Biology, Institute of Biology I, Faculty of Biology, and Bernstein Center Freiburg, University of Freiburg, 79104 Freiburg, Germany; email:

出版信息

Annu Rev Vis Sci. 2019 Sep 15;5:269-293. doi: 10.1146/annurev-vision-091718-014723.

Abstract

Visual stimuli can evoke complex behavioral responses, but the underlying streams of neural activity in mammalian brains are difficult to follow because of their size. Here, I review the visual system of zebrafish larvae, highlighting where recent experimental evidence has localized the functional steps of visuomotor transformations to specific brain areas. The retina of a larva encodes behaviorally relevant visual information in neural activity distributed across feature-selective ganglion cells such that signals representing distinct stimulus properties arrive in different areas or layers of the brain. Motor centers in the hindbrain encode motor variables that are precisely tuned to behavioral needs within a given stimulus setting. Owing to rapid technological progress, larval zebrafish provide unique opportunities for obtaining a comprehensive understanding of the intermediate processing steps occurring between visual and motor centers, revealing how visuomotor transformations are implemented in a vertebrate brain.

摘要

视觉刺激可以引发复杂的行为反应,但由于哺乳动物大脑的规模庞大,其神经活动的潜在流很难被追踪。在这里,我回顾了斑马鱼幼虫的视觉系统,强调了最近的实验证据将视觉运动转换的功能步骤定位到特定脑区的地方。幼虫的视网膜将与行为相关的视觉信息编码为分布在特征选择性神经节细胞中的神经活动,使得代表不同刺激特性的信号到达大脑的不同区域或层。后脑的运动中枢编码的运动变量与特定刺激环境中的行为需求精确匹配。由于技术的快速进步,斑马鱼幼虫为全面了解视觉和运动中枢之间发生的中间处理步骤提供了独特的机会,揭示了在脊椎动物大脑中视觉运动转换是如何实现的。

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