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猫中从低阈值皮肤传入神经到小脑皮质中间部的攀爬纤维投射的躯体定位组织。

Somatotopic organization of climbing fiber projections from low threshold cutaneous afferents to pars intermedia of cerebellar cortex in the cat.

作者信息

Rushmer D S, Woollacott M H, Robertson L T, Laxer K D

出版信息

Brain Res. 1980 Jan 6;181(1):17-30. doi: 10.1016/0006-8993(80)91256-1.

Abstract

The fine detail of climbing fiber projections to large areas of the pars intermedia of lobule V was demonstrated by means of low threshold natural cutaneous stimulation. These projections formed a complex mediolateral organization of patches that were elongated in the anteroposterior direction. In general, distal forelimb was represented medially and the face represented laterally, although there were also elongated patches of cells that did not respond to any cutaneous stimulus presentation. The entire ipsilateral anterior quadrant of the body was represented in lobules Vb, c, d with the addition of face projections which extended slightly across the midline. Ipsilateral hindlimb patches were observed in lobule Va. Although the boundary between patches was quite sharp, a slight overlap of the patches within the mosaic was often observed. In these areas of overlap, some cells possessed receptive fields that encompassed, either continuously or discontinuously, cutaneous areas of both the adjacent patches. It is proposed that the cerebellar cortex could correlate event timing in the climbing fiber patches with 'on-line' information relating the parameters of movement in the granule cell parallel fiber system, and that the areas described in the present study could mediate 'spatially organized and skilled movements' in the animal's repertoire, which involve paw-face-mouth interaction, such as feeding, cleaning and grooming.

摘要

通过低阈值自然皮肤刺激,展示了攀缘纤维向小叶V中间部大面积区域投射的精细细节。这些投射形成了一个复杂的中外侧组织的斑块,这些斑块在前后方向上呈细长状。一般来说,前肢远端在中间代表,面部在外侧代表,尽管也有一些细长的细胞斑块对任何皮肤刺激呈现都没有反应。身体同侧的整个前象限在小叶Vb、c、d中代表,面部投射略微越过中线。在小叶Va中观察到同侧后肢斑块。尽管斑块之间的边界相当清晰,但在镶嵌图中经常观察到斑块之间有轻微的重叠。在这些重叠区域,一些细胞具有感受野,这些感受野连续或不连续地涵盖相邻斑块的皮肤区域。有人提出,小脑皮质可以将攀缘纤维斑块中的事件时间与颗粒细胞平行纤维系统中与运动参数相关的“在线”信息联系起来,并且本研究中描述的区域可以介导动物行为中涉及爪-面-口相互作用(如进食、清洁和梳理)的“空间组织和熟练运动”。

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