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金鱼双极细胞与轴突终末模式:一项高尔基染色研究

Goldfish bipolar cells and axon terminal patterns: a Golgi study.

作者信息

Sherry D M, Yazulla S

机构信息

Department of Neurobiology and Behavior, SUNY-Stony Brook 11794-5230.

出版信息

J Comp Neurol. 1993 Mar 8;329(2):188-200. doi: 10.1002/cne.903290204.

DOI:10.1002/cne.903290204
PMID:8454729
Abstract

The morphology and axon terminal arrangement of Golgi stained goldfish bipolar cells were examined to understand better the organization of bipolar cells in the inner plexiform layer (IPL) of the retina. Fifteen morphological bipolar cell types were identified, representing two major cell classes: mixed input cells that receive input from rod and cone photoreceptors, and cone bipolar cells that receive input from cones only. Mixed input bipolar cells comprised six types, including two new types, characterized by large somas and terminals. The terminals of mixed input bipolar cells terminated strictly within sublamina a or b of the IPL. Cone bipolar cells comprised nine subtypes, including seven new types, characterized by small somas and from one to four small terminal bulbs along the length of the axon, each having a characteristic termination depth in the IPL. The cone bipolar cell system had a complex multilaminar organization of terminals in the IPL, but maintained a high degree of anatomical symmetry about sublamina a and b. Cone bipolar cells could be divided into three groups: cells terminating within sublamina a and having an anatomically symmetrical counterpart terminating in sublamina b; cells with anatomically similar terminals in both sublamina a and b; and cells having no anatomically symmetrical counterpart or having anatomically dissimilar terminals in sublamina a and b. Based on bipolar cell terminal arrangement, we suggest that each bipolar cell type probably has a unique set of synaptic targets in the IPL, and that several bipolar cell types may be involved in functionally equivalent circuits at more than one level in the IPL.

摘要

为了更好地了解视网膜内网状层(IPL)中双极细胞的组织结构,研究人员对经高尔基染色的金鱼双极细胞的形态和轴突终末排列进行了检查。共鉴定出15种形态学双极细胞类型,分属两大类:接收来自视杆和视锥光感受器输入的混合输入细胞,以及仅接收视锥输入的视锥双极细胞。混合输入双极细胞包括6种类型,其中包括两种新类型,其特征为胞体和终末较大。混合输入双极细胞的终末严格终止于IPL的a或b亚层内。视锥双极细胞包括9个亚型,其中包括7种新类型,其特征为胞体较小,轴突长度上有1至4个小终末球,每个终末球在IPL中都有特定的终止深度。视锥双极细胞系统在IPL中具有复杂的多层终末组织,但在a和b亚层周围保持高度的解剖学对称性。视锥双极细胞可分为三组:终末位于a亚层内且在b亚层有解剖学对称对应终末的细胞;在a和b亚层都有解剖学相似终末的细胞;以及在a和b亚层没有解剖学对称对应终末或终末解剖学不同的细胞。基于双极细胞终末排列,我们认为每种双极细胞类型在IPL中可能都有一套独特的突触靶点,并且几种双极细胞类型可能在IPL的多个层面参与功能等效的回路。

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