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鲶鱼视网膜神经元的形态学和功能鉴定。I. 经典形态学。

Morphological and functional identifications of catfish retinal neurons. I. Classical morphology.

作者信息

Naka K, Garraway N R

出版信息

J Neurophysiol. 1975 Jan;38(1):53-71. doi: 10.1152/jn.1975.38.1.53.

Abstract

The morphology of the catfish horizontal cells is comparable to that in other fish retinas. The external horizontal cells contact cone receptors and are stellate in shape; the intermediate horizontal cells are even more so and contact rod receptors. The internal horizontal cells constitute the most proximal layer of the inner nuclear layer and may possibly be, in reality, extended processes from the other two horizontal cell types. Bipolar cells resemble those in other teleost retinas: the size and shape of their dendritic tree encompass a continuous spectrum ranging from what is known as the small to the large bipolar cells. The accepted definition of amacrine cells is sufficiently vague to justify our originating a more descriptive and less inferential name for the (axonless) neurons in the inner nuclear layer which radiate processes throughout the inner synaptic layer. These starbust and spaghetti cells vary considerably in the character and extent of their dendritic spread, but correlates exist in other vertebrate retinas. Ganglion cells are found not only in the classical ganglion layer but displaced into the inner nuclear layer as well. Several types can be distinguished on the basis of cell geometry and by the properties of their dendritic tree. Not all of the categorization corresponds with previous descriptions; our findings suggest that some reorganization may be necessary in the accepted classification of cells in the proximal areas of the vertebrate retina. A subtle yet remarkable pattern underlies the entire structure of the catfish retina; there exists a definite gradient of size within a particular class of cells, and of configuration among the subclasses of a specific cell type. It remains to be seen if these morphological spectra bear any functional consequences. The fact that the structure of the catfish retina most closely resembles those of other phylogenetically ancient animals, such as the skate and the dogfish shark, testifies to its primitive organization; morphological and functional mechanisms discernible in this simple system may, therefore, be applicable to the retinas of higher ordered vertebrates.

摘要

鲶鱼水平细胞的形态与其他鱼类视网膜中的形态相似。外部水平细胞与视锥感受器接触,呈星状;中间水平细胞更是如此,与视杆感受器接触。内部水平细胞构成内核层最靠近近端的一层,实际上可能是另外两种水平细胞类型的延伸过程。双极细胞与其他硬骨鱼视网膜中的双极细胞相似:它们树突树的大小和形状涵盖了一个连续的范围,从所谓的小双极细胞到大型双极细胞。无长突细胞的公认定义足够模糊,这使得我们有理由为内核层中那些在整个内突触层辐射突起的(无轴突)神经元创造一个更具描述性且推断性较小的名称。这些星爆状细胞和意大利面条状细胞在其树突扩展的特征和范围上有很大差异,但在其他脊椎动物视网膜中也存在相关性。神经节细胞不仅存在于经典的神经节层中,也会移位到内核层中。根据细胞几何学和其树突树的特性可以区分出几种类型。并非所有的分类都与先前的描述一致;我们的研究结果表明,在脊椎动物视网膜近端区域细胞的公认分类中可能需要进行一些重新组织。鲶鱼视网膜的整个结构之下存在一种微妙而显著的模式;在特定类别的细胞中存在明确的大小梯度,在特定细胞类型的亚类之间存在构型梯度。这些形态谱是否具有任何功能后果还有待观察。鲶鱼视网膜的结构与其他系统发育上古老的动物(如鳐鱼和角鲨)的结构最为相似,这证明了其原始的组织形式;因此,在这个简单系统中可辨别的形态和功能机制可能适用于高等脊椎动物的视网膜。

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