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一项关于同侧内嗅皮层损伤后对侧内嗅皮层对齿状回重新支配的定量放射自显影和电生理研究。

A quantitative autoradiographic and electrophysiological study of the reinnervation of the dentate gyrus by the contralateral entorhinal cortex following ipsilateral entorhinal lesions.

作者信息

Steward O, Cotman C, Lynch G

出版信息

Brain Res. 1976 Sep 17;114(2):181-200. doi: 10.1016/0006-8993(76)90665-x.

Abstract

The post-lesion proliferation of contralateral enthorhinal afferents which occurs in response to ipsilateral entorhinal lesions was quantitatively analyzed with autoradiographic and electrophysiological techniques. In both cases, the extent of the crossed projection to the dentate granule cells was quantified on the basis of a contralateral/ipsilateral (C/I) ratio. Autoradiographic measures of grain density in the entorhinal terminal field indicates that the very sparse crossed entorhinal projection in intact animals proliferates approximately 6-fold following unilateral entorhinal lesions (on the basis of an increased C/I ratio of grain density in animals with long standing unilater entorhinal lesions). Furthermore, the total number of grains in the entorhinal terminal zone (obtained by subtracting background from non-terminal regions) also increases approximately 6-fold, indicating that compression of the neuropil cannot be the factor responsible for the increased grain density. These increases in the anatomical extent of the crossed projection as a consequence of unilateral entorhinal lesions are also reflected electrophysiologically. In operated animals, the C/I ratio of the extracellular population EPSP (a measure of the synaptic current generated by the crossed projections) also increase 5-8 fold. In addition, while in normal animals, no population spikes are observed following stimulation of the contralateral entorhinal area (indicating an absence of synchronous grnaule cell discharge in response to contralateral entorhinal input), such population spikes are quite prominent in the reinnervated dentate gyrus, indicating a large increase in the effective synaptic drive of the proliferated crossed projections.

摘要

运用放射自显影和电生理技术,对因同侧内嗅皮层损伤而引发的对侧内嗅传入纤维损伤后增殖情况进行了定量分析。在这两种情况下,基于对侧/同侧(C/I)比率,对投射至齿状颗粒细胞的交叉投射范围进行了量化。内嗅终末区颗粒密度的放射自显影测量结果表明,完整动物中非常稀疏的交叉内嗅投射在单侧内嗅损伤后增殖了约6倍(基于长期单侧内嗅损伤动物颗粒密度的C/I比率增加)。此外,内嗅终末区的颗粒总数(通过从非终末区域减去背景获得)也增加了约6倍,这表明神经纤维网的压缩并非导致颗粒密度增加的原因。单侧内嗅损伤导致的交叉投射解剖学范围的这些增加在电生理上也有所体现。在手术动物中,细胞外群体兴奋性突触后电位的C/I比率(交叉投射产生的突触电流的一种测量指标)也增加了5至8倍。此外,在正常动物中,刺激对侧内嗅区时未观察到群体峰电位(表明对侧内嗅输入时不存在同步的颗粒细胞放电),而在重新支配的齿状回中,这种群体峰电位非常显著,这表明增殖的交叉投射的有效突触驱动大幅增加。

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