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鲤鱼视网膜中视锥细胞与水平细胞相互作用的光依赖性变化。

Light-dependent change of cone-horizontal cell interactions in carp retina.

作者信息

Weiler R, Wagner H J

出版信息

Brain Res. 1984 Apr 23;298(1):1-9. doi: 10.1016/0006-8993(84)91141-7.

Abstract

Carp H2 horizontal cells were investigated at various stages of dark and light adaptation. Their state of adaptation was verified by evaluating in computer reconstructed serial sections the number of small, fingerlike protrusions originating from H1 processes. These so-called spinules are absent in the dark-adapted state and are reformed during light adaptation. Intracellular recordings showed that long-wave-induced depolarization thought to be mediated by sign-inverted feedback from H1 horizontal cells onto green-sensitive cones could not be demonstrated in completely dark-adapted specimens. This type of response only developed with increasing light adaptation. Following electrophysiological characterization, the cells were injected with horseradish peroxidase and identified light and electronmicroscopically. Our results show a good correlation between the number of spinules and the degree of electrophysiological feedback suggesting that the spinules may be the sites of the feedback synapses in teleost retinas. Several models of synaptic transmission from H1 terminals to cone pedicles are discussed.

摘要

在暗适应和明适应的不同阶段对鲤鱼H2水平细胞进行了研究。通过在计算机重建的连续切片中评估源自H1突起的小的指状突起的数量,来验证它们的适应状态。这些所谓的棘状突起在暗适应状态下不存在,在明适应过程中重新形成。细胞内记录表明,在完全暗适应的标本中,无法证明长波诱导的去极化(认为是由H1水平细胞到绿敏视锥细胞的信号反转反馈介导的)。这种类型的反应仅在明适应增加时出现。在进行电生理特征分析后,向细胞中注入辣根过氧化物酶,并通过光镜和电镜进行鉴定。我们的结果表明棘状突起的数量与电生理反馈程度之间具有良好的相关性,这表明棘状突起可能是硬骨鱼视网膜中反馈突触的部位。讨论了从H1终末到视锥小足的几种突触传递模型。

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