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在小鼠胡须检测任务中感觉运动转换的皮质定位。

Cortical Localization of the Sensory-Motor Transformation in a Whisker Detection Task in Mice.

机构信息

Department of Psychology, University of California Riverside, Riverside, CA 92521.

Neuroscience Graduate Program, University of California Riverside, Riverside, CA 92521.

出版信息

eNeuro. 2021 Feb 1;8(1). doi: 10.1523/ENEURO.0004-21.2021. Print 2021 Jan-Feb.

Abstract

Responding to a stimulus requires transforming an internal sensory representation into an internal motor representation. Where and how this sensory-motor transformation occurs is a matter of vigorous debate. Here, we trained male and female mice in a whisker detection go/no-go task in which they learned to respond (lick) following a transient whisker deflection. Using single unit recordings, we quantified sensory-related, motor-related, and choice-related activities in whisker primary somatosensory cortex (S1), whisker region of primary motor cortex (wMC), and anterior lateral motor cortex (ALM), three regions that have been proposed to be critical for the sensory-motor transformation in whisker detection. We observed strong sensory encoding in S1 and wMC, with enhanced encoding in wMC, and a lack of sensory encoding in ALM. We observed strong motor encoding in all three regions, yet largest in wMC and ALM. We observed the earliest choice probability in wMC, despite earliest sensory responses in S1. Based on the criteria of having both strong sensory and motor representations and early choice probability, we identify whisker motor cortex as the cortical region most directly related to the sensory-motor transformation. Our data support a model of sensory encoding originating in S1, sensory amplification and sensory-motor transformation occurring within wMC, and motor signals emerging in ALM after the sensory-motor transformation.

摘要

响应刺激需要将内部感觉表现转化为内部运动表现。这种感觉-运动转换在哪里以及如何发生是一个激烈争论的问题。在这里,我们训练雄性和雌性小鼠进行胡须检测的“是/否”任务,在该任务中,它们学会在短暂的胡须偏转后做出反应(舔舐)。使用单细胞记录,我们量化了在胡须初级体感皮层(S1)、初级运动皮层的胡须区域(wMC)和前外侧运动皮层(ALM)中的感觉相关、运动相关和选择相关活动,这三个区域被认为是在胡须检测中的感觉-运动转换中至关重要的。我们观察到 S1 和 wMC 中有强烈的感觉编码,wMC 中的编码增强,而 ALM 中没有感觉编码。我们观察到所有三个区域都有强烈的运动编码,但 wMC 和 ALM 中的运动编码最大。尽管最早的感觉反应出现在 S1,但我们最早观察到了 wMC 中的选择概率。根据具有强烈的感觉和运动表现以及早期选择概率的标准,我们确定胡须运动皮层是与感觉-运动转换最直接相关的皮层区域。我们的数据支持一种模型,即感觉编码起源于 S1,感觉放大和感觉-运动转换发生在 wMC 内,而运动信号在感觉-运动转换后出现在 ALM 中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0210/7901152/4c530a8a8ed2/SN-ENUJ210020F001.jpg

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