V1 前庭信号的半球间和半球内来源

Guy Bouvier, Alessandro Sanzeni, Elizabeth Hamada, Nicolas Brunel, Massimo Scanziani
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引用次数: 0

摘要

头部运动由前庭器官感知。与传统感官不同的是,前庭器官发出的信号并不传递到专门的大脑皮层区域,而是在整个大脑皮层进行广播。令人惊讶的是,前庭信号到达大脑皮层的路径在很大程度上仍是未知的。在这里,我们展示了初级视觉皮层(V1)接收来自同侧脉管和对侧视皮层的实时头部运动信号--方向、速度和加速度。同侧脉管提供主要的头部运动信号,并偏向于逆向运动(如左侧 V1 的顺时针运动)。相反,对侧视觉皮层在同向运动时提供头部运动信号。重要的是,V1 中编码的头部运动变量已经在脉络膜中编码,这表明这些变量是在皮层下计算的。因此,大脑半球间和半球内信号的汇聚赋予了 V1 丰富的动物头部运动表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inter- and Intrahemispheric Sources of Vestibular Signals to V1.

Head movements are sensed by the vestibular organs. Unlike classical senses, signals from vestibular organs are not conveyed to a dedicated cortical area but are broadcast throughout the cortex. Surprisingly, the routes taken by vestibular signals to reach the cortex are still largely uncharted. Here we show that the primary visual cortex (V1) receives real-time head movement signals - direction, velocity, and acceleration - from the ipsilateral pulvinar and contralateral visual cortex. The ipsilateral pulvinar provides the main head movement signal, with a bias toward contraversive movements (e.g. clockwise movements in left V1). Conversely, the contralateral visual cortex provides head movement signals during ipsiversive movements. Crucially, head movement variables encoded in V1 are already encoded in the pulvinar, suggesting that those variables are computed subcortically. Thus, the convergence of inter- and intrahemispheric signals endows V1 with a rich representation of the animal's head movements.

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