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一种独特的神经回路,用于通过小鼠后纹状体对视觉感知决策进行偏置并调节上丘活动。

A distinct circuit for biasing visual perceptual decisions and modulating superior colliculus activity through the mouse posterior striatum.

作者信息

Cover Kara K, Elliott Kerry, Preuss Sarah M, Krauzlis Richard J

机构信息

Laboratory of Sensorimotor Research, National Eye Institute Bethesda, Maryland 20892 USA.

出版信息

bioRxiv. 2024 Jul 31:2024.07.31.605853. doi: 10.1101/2024.07.31.605853.

Abstract

The basal ganglia play a key role in visual perceptual decisions. Despite being the primary target in the basal ganglia for inputs from the visual cortex, the posterior striatum's (PS) involvement in visual perceptual behavior remains unknown in rodents. We reveal that the PS direct pathway is largely segregated from the dorsomedial striatum (DMS) direct pathway, the other major striatal target for visual cortex. We investigated the role of the PS in visual perceptual decisions by optogenetically stimulating striatal medium spiny neurons in the direct pathway (D1-MSNs) of mice performing a visual change-detection task. PS D1-MSN activation robustly biased visual decisions in a manner dependent on visual context, timing, and reward expectation. We examined the effects of PS and DMS direct pathway activation on neuronal activity in the superior colliculus (SC), a major output target of the basal ganglia. Activation of either direct pathway rapidly modulated SC neurons, but mostly targeted different SC neurons and had opposite effects. These results demonstrate that the PS in rodents provides an important route for controlling visual decisions, in parallel with the better known DMS, but with distinct anatomical and functional properties.

摘要

基底神经节在视觉感知决策中起关键作用。尽管后纹状体是视觉皮层输入在基底神经节的主要靶点,但在啮齿动物中,后纹状体(PS)在视觉感知行为中的作用仍不清楚。我们发现,PS直接通路在很大程度上与背内侧纹状体(DMS)直接通路分离,DMS是视觉皮层的另一个主要纹状体靶点。我们通过光遗传学刺激执行视觉变化检测任务的小鼠直接通路(D1中型多棘神经元)中的纹状体中型多棘神经元,研究了PS在视觉感知决策中的作用。PS D1-MSN激活以依赖视觉背景、时间和奖励预期的方式强烈影响视觉决策。我们研究了PS和DMS直接通路激活对中脑上丘(SC)神经元活动的影响,SC是基底神经节的主要输出靶点。任一直接通路的激活都会迅速调节SC神经元,但主要针对不同的SC神经元,且具有相反的作用。这些结果表明,在啮齿动物中,PS与广为人知的DMS并行,为控制视觉决策提供了一条重要途径,但具有不同的解剖和功能特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8c1/11451588/65bda6b3739b/nihpp-2024.07.31.605853v1-f0001.jpg

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