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粗尾婴猴(Galago crassicaudatus)小脑颗粒细胞层的体感投射

Somatosensory projections of cerebellar granule cell layer of giant bushbaby, Galago crassicaudatus.

作者信息

Welker W, Blair C, Shambes G M

机构信息

University of Wisconsin, Madison.

出版信息

Brain Behav Evol. 1988;31(3):150-60. doi: 10.1159/000116582.

Abstract

Recent neurophysiological studies of the granule cell (GC) layer in opossums and rats revealed extensive somatosensory projections to the cerebellar hemispheres and caudal vermis. These projections are organized as asomatotopic mosaics that are species-specific. To determine whether similar projections exist in a primate with a relatively small and simple cerebellum, we explored the GC layer of exposed folial crowns of anterior and posterior lobe cerebellar cortex of anesthetized giant galagos using juxtathreshold natural stimulation of mechanoreceptors and in-depth microelectrode micromapping techniques. We found (1) that stimulation of somatosensory mechanoreceptors by gentle touch, deep pressure, muscle stretch and joint movement revealed projections to the GC layer throughout the mediolateral extent of crus II, paramedian lobule, pyramis and rostral uvula (crus I was unresponsive); (2) that mosaic patterns of peripheral sources and submodality of projections were different for each lobule, and (3) that there were intraspecies and individual differences in subfoliation and in details of projections. Except for differences in mosaic pattern and relative size of different projections, these findings are similar to those in opossums and rats. These data suggest that somatosensory inputs to the cerebellum are not only functionally significant, but that they exist widely among mammals.

摘要

近期针对负鼠和大鼠颗粒细胞(GC)层的神经生理学研究表明,躯体感觉向小脑半球和尾侧蚓部有广泛投射。这些投射以躯体定位镶嵌图的形式组织,且具有物种特异性。为了确定在小脑相对较小且结构简单的灵长类动物中是否存在类似投射,我们利用对机械感受器的阈下自然刺激和深度微电极微图谱技术,对麻醉的粗尾婴猴小脑前叶和后叶皮质暴露叶冠的GC层进行了探索。我们发现:(1)通过轻触、深压、肌肉拉伸和关节运动对躯体感觉机械感受器进行刺激时,在 Crus II、旁正中小叶、蚓锥体和嘴侧蚓垂的整个内外侧范围内,均显示出向GC层的投射(Crus I无反应);(2)每个小叶的外周来源和投射亚模式的镶嵌模式各不相同;(3)小叶划分以及投射细节存在种内和个体差异。除了镶嵌模式和不同投射的相对大小存在差异外,这些发现与负鼠和大鼠的情况相似。这些数据表明,小脑的躯体感觉输入不仅在功能上具有重要意义,而且在哺乳动物中广泛存在。

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