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[组织培养中中缝核与海马核之间连接的形成(活体功能和形态学研究)]

[Formation of connections between the raphe and hippocampal nuclei in tissue culture (intravital functional and morphological studies)].

作者信息

Chubakov A R, Sotnikov O S

出版信息

Arkh Anat Gistol Embriol. 1982 Mar;82(3):11-20.

PMID:7092584
Abstract

A combined cultivation in vitro of the hippocampal and raphe nuclei explants have been performed. Certain conditions and mechanisms on connections formed between them have been analysed. Vital observations by means of a phase-contrast microscope makes it possible to reveal three types of connections between the explants which differ by the degree of development and differentiation. The base of the earliest diffuse type of connection is presented by a fine network of flat multipressed and intercontacting gliocytes. The intermediate type of connection is characterized by aggregation of glial elements and formation of loose cords with anastomoses. Reduction of the fine network results from reduction of the glyocytic processes. The most differentiated type of connections is presented by raphe-hippocampal tracts. They are always rectilinear and develop along the shortest way between the explants. When the explants from the hippocamp and cerebellum, which have no natural intercerebral connections, are cultivated together, no formation of any magistral or intermediate types of connection is observed. An important factor in differentiation of the magistral tracts is the reactive kinetics of the glial cells. Strict straightness of the tracts and selectivity in formation of connections between various explants demonstrate also an important role of the neuro-neuronal mechanisms of chemotaxis. The direction of the connections formed can be correlated by means of some artificial guides-threads.

摘要

已进行海马体和中缝核外植体的联合体外培养。分析了它们之间形成连接的某些条件和机制。借助相差显微镜进行的活体观察能够揭示外植体之间三种不同发育和分化程度的连接类型。最早的弥散型连接的基础是由扁平多压且相互接触的神经胶质细胞构成的精细网络。中间型连接的特征是神经胶质成分聚集并形成带有吻合支的松散索条。精细网络的减少是由于神经胶质细胞突起的减少。最分化的连接类型是中缝 - 海马束。它们总是直线型的,并沿着外植体之间的最短路径发育。当将没有自然脑内连接的海马体和小脑的外植体一起培养时,未观察到任何主束或中间型连接的形成。主束分化的一个重要因素是神经胶质细胞的反应动力学。束的严格直线性以及不同外植体之间连接形成的选择性也表明了趋化性的神经 - 神经元机制的重要作用。通过一些人工引导线可以关联所形成连接的方向。

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