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猫前叶Vb/c小叶的小脑皮质-核团投射:一项电生理与放射自显影联合研究。II. 蚓部的投射

The cerebellar corticonuclear projection from lobule Vb/c of the cat anterior lobe: a combined electrophysiological and autoradiographic study. II. Projections from the vermis.

作者信息

Trott J R, Armstrong D M

机构信息

Department of Physiology, Medical School, University Walk, Bristol, U.K.

出版信息

Exp Brain Res. 1987;68(2):339-54. doi: 10.1007/BF00248800.

Abstract

The present study is an investigation of the efferent pathways from Purkinje cells within particular sagittal zones of the vermal region of the cat cerebellar cortex. A combined electrophysiological/autoradiographic technique was used, in which a small volume (10-120 nl) of 3H-leucine was injected into the centre of a chosen cortical zone after the mediolateral extent of the zone had been delimited electrophysiologically on the basis of its climbing fibre input. Study of the uptake and orthograde transport of labelled material by the Purkinje cells showed that the smallest injections gave rise to injection sites which were restricted to a single zone and to terminal labelling which was very reproducible between cases. Larger injections usually resulted in spread of labelled material to neighbouring zones but the resultant distribution of terminal labelling was nevertheless consistent with that arising from smaller injections. The x zone, which receives climbing fibre input transmitted from the ipsilateral forelimb via a dorsal funiculus spino-olivo-cerebellar pathway (DF-SOCP), was found to project to the junctional region between nucleus fastigius and nucleus interpositus posterior (NIP). The b zone, which lies laterally in the vermis and receives climbing fibre input transmitted from both forelimbs (and both hindlimbs) via a slower conducting SOCP, was found to project, not to the cerebellar nuclei proper, but to the ipsilateral lateral vestibular nucleus. The projection of the third zone within the vermis, the a zone, was not examined but it is generally agreed that this zone projects mainly to nucleus fastigius.

摘要

本研究旨在调查猫小脑皮质蚓部特定矢状区内浦肯野细胞的传出通路。采用了电生理/放射自显影相结合的技术,即在根据其攀缘纤维输入在电生理上界定了所选皮质区的中外侧范围后,将小体积(10 - 120 nl)的3H-亮氨酸注入该区域的中心。对浦肯野细胞摄取和顺行运输标记物质的研究表明,最小剂量的注射产生的注射部位局限于单个区域,并且终末标记在不同病例之间具有很高的重复性。较大剂量的注射通常会导致标记物质扩散到相邻区域,但终末标记的最终分布与较小剂量注射产生的分布仍然一致。x区通过背索脊髓-橄榄-小脑通路(DF-SOCP)接收来自同侧前肢传递的攀缘纤维输入,发现其投射到顶核与后间位核(NIP)之间的连接区域。b区位于蚓部外侧,通过传导较慢的SOCP接收来自双侧前肢(和双侧后肢)传递的攀缘纤维输入,发现其投射并非到小脑核本身,而是到同侧外侧前庭核。蚓部内的第三个区域,即a区的投射未进行研究,但一般认为该区域主要投射到顶核。

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