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小鼠上丘视觉表征扫视调制的神经基质

Neural substrates for saccadic modulation of visual representations in mouse superior colliculus.

作者信息

Hunt Joshua B, Buteau Anna, Hanson Spencer, Poleg-Polsky Alon, Felsen Gidon

机构信息

Department of Physiology and Biophysics, and Neuroscience Program, University of Colorado School of Medicine, Aurora, CO 80045, United States of America.

出版信息

bioRxiv. 2024 Sep 23:2024.09.21.613770. doi: 10.1101/2024.09.21.613770.

Abstract

How do sensory systems account for stimuli generated by natural behavior? We addressed this question by examining how an ethologically relevant class of saccades modulates visual representations in the mouse superior colliculus (SC), a key region for sensorimotor integration. We quantified saccadic modulation by recording SC responses to visual probes presented at stochastic saccade-probe latencies. Saccades significantly impacted population representations of the probes, with early enhancement that began prior to saccades and pronounced suppression for several hundred milliseconds following saccades, independent of units' visual response properties or directional tuning. To determine the cause of saccadic modulation, we presented fictive saccades that simulated the visual experience during saccades without motor output. Some units exhibited similar modulation by fictive and real saccades, suggesting a sensory-driven origin of saccadic modulation, while others had dissimilar modulation, indicating a motor contribution. These findings advance our understanding of the neural basis of natural visual coding.

摘要

感觉系统如何解释自然行为产生的刺激?我们通过研究一类与行为学相关的扫视如何调节小鼠上丘(SC)中的视觉表征来解决这个问题,上丘是感觉运动整合的关键区域。我们通过记录SC对在随机扫视-探测潜伏期呈现的视觉探针的反应来量化扫视调制。扫视显著影响探针的群体表征,在扫视之前开始有早期增强,并在扫视后几百毫秒有明显抑制,与单位的视觉反应特性或方向调谐无关。为了确定扫视调制的原因,我们呈现了模拟扫视期间视觉体验但无运动输出的虚拟扫视。一些单位对虚拟扫视和真实扫视表现出相似的调制,表明扫视调制有感觉驱动的起源,而其他单位有不同的调制,表明有运动贡献。这些发现推进了我们对自然视觉编码神经基础的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6eea/11463470/74cf15055afe/nihpp-2024.09.21.613770v1-f0001.jpg

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