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兔视网膜神经纤维层的超微结构——神经胶质关系、髓鞘形成及神经纤维谱

Ultrastructure of rabbit retinal nerve fibre layer--neuro-glial relationships, myelination, and nerve fibre spectrum.

作者信息

Reichenbach A, Schippel K, Schümann R, Hagen E

机构信息

Carl Ludwig Institute of Physiology, Karl Marx University, Leipzig, German Democratic Republic.

出版信息

J Hirnforsch. 1988;29(5):481-91.

PMID:3216098
Abstract

The ultrastructure of the rabbit retinal nerve fibre layer was studied both in retinal centre and periphery. The central nerve fibre layer was found to contain large masses of--mostly myelinated--nerve fibres, somata and processes of astrocytes and oligodendrocytes, vitreal processes of Müller cells, and blood vessels. Astrocyte and Müller cell processes could be discriminated both by their direction and by the thickness of their intermediate filaments which was about 7 nm in Müller cells and about 10 nm in astrocytes. Some peculiarities of nuclei and cytoplasmic organelles of rabbit retinal astrocytes and oligodendrocytes are described. Myelin sheaths are demonstrated to be derived from oligodendrocytes; in some cases, two axons were found within a common myelin sheath. In the retinal periphery, only sparse thin bundles of unmyelinated axons were found in between a thick row of big Müller cell endfeet; astrocytes, oligodendrocytes, and blood vessels were missing here. In both retinal regions, node-like membrane specializations of optic axons were found; these were always surrounded by a corona of fine glial processes arising from astrocytes as well as from Müller cells. The features of myelination within the rabbit nerve fibre layer were quantified, and compared with recent literature data. A hypothesis is offered relating the production of myelin to the release of diffusable substance(s) by active axons. This hypotheses allows to account for the striking finding that relatively thick axons remain unmyelinated in the nerve fibre layer of most mammalian retinae like in the rabbit retinal periphery whereas they become myelinated in the central rabbit retina like in central nervous system in general.

摘要

对兔视网膜神经纤维层的超微结构在视网膜中心和周边区域进行了研究。发现中心神经纤维层含有大量——大多为有髓鞘的——神经纤维、星形胶质细胞和少突胶质细胞的胞体及突起、穆勒细胞的玻璃体突起以及血管。星形胶质细胞和穆勒细胞的突起可通过其方向以及中间丝的厚度来区分,穆勒细胞的中间丝厚度约为7纳米,星形胶质细胞的约为10纳米。描述了兔视网膜星形胶质细胞和少突胶质细胞核及细胞质细胞器的一些特点。证明髓鞘来源于少突胶质细胞;在某些情况下,在一个共同的髓鞘内发现有两条轴突。在视网膜周边区域,在一排粗大的穆勒细胞终足之间仅发现稀疏的细束无髓鞘轴突;此处没有星形胶质细胞、少突胶质细胞和血管。在视网膜的这两个区域均发现了视神经轴突的节点样膜特化结构;这些结构总是被来自星形胶质细胞和穆勒细胞的细小胶质突起所环绕。对兔神经纤维层内的髓鞘形成特征进行了量化,并与近期文献数据进行了比较。提出了一个关于髓鞘产生与活跃轴突释放可扩散物质之间关系的假说。该假说能够解释一个显著的发现,即相对较粗的轴突在大多数哺乳动物视网膜的神经纤维层中如兔视网膜周边区域保持无髓鞘状态,而在兔视网膜中心区域则像中枢神经系统一般会形成髓鞘。

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