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腹外侧膝状体的丘系向中脑水管周围灰质投射对视觉空间处理的增强和语境调节。

Enhancement and contextual modulation of visuospatial processing by thalamocollicular projections from ventral lateral geniculate nucleus.

机构信息

Center for Neural Circuits and Sensory Processing Disorders, Zilkha Neurogenetic Institute, Keck School of Medicine, University of Southern California, Los Angeles, CA, 90033, USA.

Graduate Program in Neuroscience, University of Southern California, Los Angeles, CA, 90033, USA.

出版信息

Nat Commun. 2023 Nov 10;14(1):7278. doi: 10.1038/s41467-023-43147-9.

Abstract

In the mammalian visual system, the ventral lateral geniculate nucleus (vLGN) of the thalamus receives salient visual input from the retina and sends prominent GABAergic axons to the superior colliculus (SC). However, whether and how vLGN contributes to fundamental visual information processing remains largely unclear. Here, we report in mice that vLGN facilitates visually-guided approaching behavior mediated by the lateral SC and enhances the sensitivity of visual object detection. This can be attributed to the extremely broad spatial integration of vLGN neurons, as reflected in their much lower preferred spatial frequencies and broader spatial receptive fields than SC neurons. Through GABAergic thalamocollicular projections, vLGN specifically exerts prominent surround suppression of visuospatial processing in SC, leading to a fine tuning of SC preferences to higher spatial frequencies and smaller objects in a context-dependent manner. Thus, as an essential component of the central visual processing pathway, vLGN serves to refine and contextually modulate visuospatial processing in SC-mediated visuomotor behaviors via visually-driven long-range feedforward inhibition.

摘要

在哺乳动物的视觉系统中,丘脑的腹外侧膝状体核(vLGN)从视网膜接收显著的视觉输入,并向顶盖(SC)发送显著的 GABA 能轴突。然而,vLGN 是否以及如何有助于基本的视觉信息处理在很大程度上仍不清楚。在这里,我们在小鼠中报告称,vLGN 促进了由外侧 SC 介导的视觉引导的接近行为,并提高了视觉物体检测的敏感性。这归因于 vLGN 神经元的极其广泛的空间整合,这反映在它们的首选空间频率明显低于 SC 神经元,空间感受野也比 SC 神经元宽。通过 GABA 能的丘脑-顶盖投射,vLGN 特异性地对 SC 中的视觉空间处理施加显著的环绕抑制,从而以依赖上下文的方式精细调节 SC 对较高空间频率和较小物体的偏好。因此,作为中央视觉处理途径的一个重要组成部分,vLGN 通过视觉驱动的长程前馈抑制,用于在 SC 介导的视觉运动行为中的视觉空间处理中进行细化和上下文调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcab/10638288/b8d4b20e8dd0/41467_2023_43147_Fig1_HTML.jpg

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