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在鲶鱼视网膜中,神经节细胞树突是突触前的。

Ganglion cell dendrites are presynaptic in catfish retina.

作者信息

Sakai H M, Naka K, Dowling J E

出版信息

Nature. 1986;319(6053):495-7. doi: 10.1038/319495a0.

Abstract

The retinal ganglion cells are third-order, spike-generating neurones whose axons transmit the output of the retina to the rest of the brain. It has long been believed that the dendrites of the retinal ganglion cells, like the dendrites of most other Golgi type I neurones, are only postsynaptic. Here we have studied the synapses made onto the ganglion cells in the catfish (Ictalurus punctatus), and we report that the distal dendrites of large-field ganglion cells make conventional chemical synapses onto other inner plexiform layer processes. We have also found that, more than 100 microns away from the cell perikaryon, the synapses made onto and by these ganglion cell dendrites are often tightly clustered. These synaptic clusters appear to be quite regularly spaced along the dendrites. Our results have important implications for the identification of ganglion cell dendrites within the inner plexiform layer as well as for the understanding of the ganglion cell response and receptive field generation.

摘要

视网膜神经节细胞是第三级的、能产生动作电位的神经元,其轴突将视网膜的输出信号传递至大脑的其他部分。长期以来,人们一直认为,视网膜神经节细胞的树突,与大多数其他高尔基I型神经元的树突一样,仅作为突触后成分。在此,我们研究了鲶鱼(斑点叉尾鮰)神经节细胞上形成的突触,并且报告称,大视野神经节细胞的远端树突会与其他内网状层的神经元形成传统的化学突触。我们还发现,在距离细胞胞体100多微米远的地方,这些神经节细胞树突上和由其形成的突触常常紧密聚集在一起。这些突触簇沿着树突的分布似乎相当规则。我们的研究结果对于在内网状层中识别神经节细胞树突以及理解神经节细胞的反应和感受野的形成具有重要意义。

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