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通过海马体了解皮层:大鼠海马神经元的层特异性连接

Understanding the cortex through the hippocampus: lamina-specific connections of the rat hippocampal neurons.

作者信息

Frotscher M, Heimrich B, Deller T, Nitsch R

机构信息

Institute of Anatomy, University of Freiburg, Germany.

出版信息

J Anat. 1995 Dec;187 ( Pt 3)(Pt 3):539-45.

Abstract

A characteristic feature of hippocampal organisation is the lamina-specific termination of afferent fibres. The factors determining this characteristic fibre segregation are not known. By using slice cultures as a model, we have recently demonstrated that the laminated termination of hippocampal afferents does not result from the temporal sequence of ingrowth of the various afferent fibre systems during development. Moreover, the lack of extrinsic afferents in culture does not induce a substantial translaminar sprouting of the remaining (intrinsic) fibres or of a defined afferent system supplied by a coculture. These results contrast with previous reports on an expansion of intact fibre systems in the hippocampus in response to partial deafferentation, for instance by removal of entorhinal afferents. We therefore studied the sprouting of commissural fibres following an entorhinal lesion directly by labelling commissural axons in vivo with the anterogradely transported tracer Phaseolus vulgaris leucoagglutinin. Sprouting of commissural fibres following an entorhinal lesion was observed but, in accordance with our in vitro observations, this growth of commissural terminals took place within the appropriate termination zones of commissural fibres. These results point to a rigid laminar specificity of hippocampal afferents that is preserved after partial deafferentiation.

摘要

海马组织的一个特征是传入纤维的层特异性终止。决定这种特征性纤维分离的因素尚不清楚。通过使用脑片培养作为模型,我们最近证明海马传入纤维的分层终止并非源于发育过程中各种传入纤维系统向内生长的时间顺序。此外,培养物中缺乏外在传入纤维并不会诱导其余(内在)纤维或共培养提供的特定传入系统发生大量跨层发芽。这些结果与先前关于海马中完整纤维系统在部分传入纤维切断后(例如通过去除内嗅传入纤维)扩张的报道形成对比。因此,我们通过用顺行运输示踪剂菜豆白细胞凝集素在体内标记连合轴突,直接研究了内嗅损伤后连合纤维的发芽情况。观察到内嗅损伤后连合纤维的发芽,但与我们的体外观察结果一致,连合终末的这种生长发生在连合纤维的适当终止区内。这些结果表明海马传入纤维具有严格的层特异性,在部分传入纤维切断后仍能保持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88dc/1167458/fcdffd080e90/janat00131-0029-a.jpg

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