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幼虫斑马鱼以依赖上下文的方式使用运动学不同的扫视。

Kinematically distinct saccades are used in a context-dependent manner by larval zebrafish.

机构信息

Department of Neuroscience, Physiology & Pharmacology, UCL, Gower Street, London WC1E 6BT, UK.

Department of Neuroscience, Physiology & Pharmacology, UCL, Gower Street, London WC1E 6BT, UK.

出版信息

Curr Biol. 2024 Oct 7;34(19):4382-4396.e5. doi: 10.1016/j.cub.2024.08.008. Epub 2024 Sep 4.

DOI:10.1016/j.cub.2024.08.008
PMID:39236716
Abstract

Saccades are rapid eye movements that are used by all species with good vision. In this study, we set out to characterize the complete repertoire of larval zebrafish horizontal saccades to gain insight into their contributions to visually guided behavior and underlying neural control. We identified five saccade types, defined by systematic differences in kinematics and binocular coordination, which were differentially expressed across a variety of behavioral contexts. Conjugate saccades formed a large group that serves at least four functions. These include fast phases of the optokinetic nystagmus, visual scanning in stationary animals, and shifting gaze in coordination with body turns. In addition, we discovered a previously undescribed pattern of eye-body coordination in which small conjugate saccades partially oppose head rotation to maintain gaze during forward locomotion. Convergent saccades were coordinated with body movements to foveate prey targets during hunting. Detailed kinematic analysis showed that conjugate and convergent saccades differed in the millisecond coordination of the eyes and body and followed distinct velocity main sequence relationships. This challenges the prevailing view that all horizontal saccades are controlled by a common brainstem circuit and instead indicates saccade-type-specific neural control.

摘要

扫视是所有具有良好视力的物种都使用的快速眼球运动。在这项研究中,我们着手描述完整的幼鱼水平扫视模式,以深入了解它们对视觉引导行为的贡献和潜在的神经控制。我们确定了五种扫视类型,它们在运动学和双眼协调方面存在系统差异,这些差异在各种行为环境中表现出不同的表达。共轭扫视形成了一个大的群体,至少有四个功能。这些功能包括视动性眼球震颤的快相、静止动物的视觉扫描以及与身体转动协调的眼球注视转移。此外,我们发现了一种以前未描述的眼-体协调模式,其中小的共轭扫视部分抵抗头部旋转,以在向前运动时保持注视。会聚扫视与身体运动协调,在捕猎时注视猎物目标。详细的运动学分析表明,共轭和会聚扫视在眼睛和身体的毫秒协调方面存在差异,并遵循不同的速度主序列关系。这挑战了所有水平扫视都由一个共同的脑干回路控制的主流观点,而是表明了扫视类型特异性的神经控制。

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