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双光子钙成像在虚拟环境中的虚拟导航过程中。

Two-photon calcium imaging during fictive navigation in virtual environments.

机构信息

Department of Molecular and Cellular Biology, Harvard University Cambridge, MA, USA ; Janelia Farm Research Campus, Howard Hughes Medical Institute Ashburn, VA, USA.

出版信息

Front Neural Circuits. 2013 Jun 6;7:104. doi: 10.3389/fncir.2013.00104. eCollection 2013.

Abstract

A full understanding of nervous system function requires recording from large populations of neurons during naturalistic behaviors. Here we enable paralyzed larval zebrafish to fictively navigate two-dimensional virtual environments while we record optically from many neurons with two-photon imaging. Electrical recordings from motor nerves in the tail are decoded into intended forward swims and turns, which are used to update a virtual environment displayed underneath the fish. Several behavioral features-such as turning responses to whole-field motion and dark avoidance-are well-replicated in this virtual setting. We readily observed neuronal populations in the hindbrain with laterally selective responses that correlated with right or left optomotor behavior. We also observed neurons in the habenula, pallium, and midbrain with response properties specific to environmental features. Beyond single-cell correlations, the classification of network activity in such virtual settings promises to reveal principles of brainwide neural dynamics during behavior.

摘要

要全面了解神经系统的功能,需要在自然行为过程中记录大量神经元的活动。在这里,我们使瘫痪的幼虫斑马鱼在二维虚拟环境中进行虚拟游动,同时利用双光子成像对许多神经元进行光学记录。通过对尾部运动神经的电记录来解码预期的前向游动和转弯,这些动作被用来更新鱼下方显示的虚拟环境。在这种虚拟环境中,可以很好地复制几种行为特征,例如对全视野运动的转弯反应和对黑暗的回避。我们很容易观察到后脑中有侧向选择性反应的神经元群体,这些反应与左右光感觉运动行为相关。我们还观察到缰核、皮层和中脑中有对环境特征具有特定反应特性的神经元。除了单细胞相关性之外,在这种虚拟环境中对网络活动的分类有望揭示行为过程中大脑整体神经动力学的原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc36/3674334/801707a893f9/fncir-07-00104-g0001.jpg

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