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脑-小脑回路的组织原则。对大鼠大脑体感区(SI)至小脑颗粒细胞层触觉区的投射进行微图谱绘制。

Principles of organization of a cerebro-cerebellar circuit. Micromapping the projections from cerebral (SI) to cerebellar (granule cell layer) tactile areas of rats.

作者信息

Bower J M, Beermann D H, Gibson J M, Shambes G M, Welker W

出版信息

Brain Behav Evol. 1981;18(1-2):1-18. doi: 10.1159/000121772.

Abstract

We defined spatial patterns of organization of projections from somatosensory cerebral cortex (SI) to the somatosensory cerebellar cortex of anesthetized albino rats using microelectrode (stimulation and recording) micromapping methods and low-threshold cutaneous (tactile) stimulation. Two sampling strategies were used: (1) a single cerebral SI locus in layers V-VI was stimulated electrically, while a responding region of the cerebellar granule cell (GC) layer was systematically mapped with a recording electrode; (2) the SI stimulating electrode was used as the mapping electrode while the cerebellar GC electrode remain fixed. We found highly specific patterns of connections between somatotopically organized SI cortex and the somatotopically fractured tactile cerebellar cortex. Using threshold stimulating currents in SI, the projections from small populations of neural elements were found to be highly restricted, terminating within the confines of only those tactile cerebellar hemispheric locations having the same receptive fields (RFs). These SI-GC projections conform to the patchy mosaic pattern of organization previously shown for peripheral tactile projections. SI projections to GC patches were either contralateral or ipsilateral, depending on the laterality of the peripheral projections to that patch. Each SI focus projected to only a portion of a patch; projections from several adjacent SI loci overlapped serially within a patch. As with the peripherally evoked GC layer responses, SI-evoked GC responses were organized in a columnar fashion and were maximal at middle levels of the GC layer; SI-GC latencies were 5-8 ms. These data reveal that this tactile-related cerebro-cerebellar circuit exhibits precisely organized patterns of projection.

摘要

我们使用微电极(刺激和记录)微测绘方法以及低阈值皮肤(触觉)刺激,定义了麻醉的白化大鼠体感大脑皮层(SI)到体感小脑皮层的投射的空间组织模式。使用了两种采样策略:(1)电刺激V-VI层中的单个大脑SI位点,同时用记录电极系统地测绘小脑颗粒细胞(GC)层的反应区域;(2)将SI刺激电极用作测绘电极,而小脑GC电极保持固定。我们发现了体感定位组织的SI皮层与体感定位断裂的触觉小脑皮层之间高度特异性的连接模式。在SI中使用阈值刺激电流时,发现少量神经元的投射受到高度限制,仅终止于那些具有相同感受野(RFs)的触觉小脑半球位置范围内。这些SI-GC投射符合先前显示的外周触觉投射的斑驳镶嵌组织模式。SI到GC斑块的投射要么是对侧的,要么是同侧的,这取决于该斑块外周投射的侧别。每个SI焦点仅投射到一个斑块的一部分;来自几个相邻SI位点的投射在一个斑块内连续重叠。与外周诱发的GC层反应一样,SI诱发的GC反应以柱状方式组织,并且在GC层的中间水平最大;SI-GC潜伏期为5-8毫秒。这些数据表明,这个与触觉相关的脑-小脑回路呈现出精确组织的投射模式。

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