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鲤鱼视网膜开-关无长突细胞突触输入的分析。

Analysis of synaptic inputs to on-off amacrine cells of the carp retina.

作者信息

Kujiraoka T, Saito T, Toyoda J

机构信息

Department of Physiology, St. Marianna University, School of Medicine, Kawasaki, Japan.

出版信息

J Gen Physiol. 1988 Oct;92(4):475-87. doi: 10.1085/jgp.92.4.475.

DOI:10.1085/jgp.92.4.475
PMID:2849629
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2228908/
Abstract

To elucidate the synaptic transmission between bipolar cells and amacrine cells, the effect of polarization of a bipolar cell on an amacrine cell was examined by simultaneous intracellular recordings from both cells in the isolated carp retina. When either an ON or OFF bipolar cell was depolarized by an extrinsic current step, an ON-OFF amacrine cell was transiently depolarized at the onset of the current but no sustained polarization during the current was detected. The current hyperpolarizing the OFF bipolar cell also produced the transient depolarization of the amacrine cell at the termination of the current. These responses had a latency of approximately 10 ms. The amplitude of the current-evoked responses changed gradually with current intensity within the range used in these experiments. They were affected by polarization of the amacrine cell membrane; the amplitude of the current-evoked responses as well as the light-evoked responses was increased when the amacrine cell membrane was hyperpolarized, while the amplitude was decreased when the cell was depolarized. These results confirm directly that ON-OFF amacrine cells receive excitatory inputs from both ON and OFF bipolar cells: the ON transient is due to inputs from ON bipolar cells, and the OFF transient to inputs from OFF bipolar cells. The steady polarization of bipolar cells is converted into transient signals during the synaptic process.

摘要

为阐明双极细胞与无长突细胞之间的突触传递,通过在离体鲤鱼视网膜中同时对这两种细胞进行细胞内记录,研究了双极细胞极化对无长突细胞的影响。当用外源电流阶跃使ON或OFF双极细胞去极化时,ON-OFF无长突细胞在电流开始时会短暂去极化,但在电流期间未检测到持续的极化。使OFF双极细胞超极化的电流在电流终止时也会使无长突细胞产生短暂去极化。这些反应的潜伏期约为10毫秒。在这些实验所用的电流强度范围内,电流诱发反应的幅度随电流强度逐渐变化。它们受无长突细胞膜极化的影响;当无长突细胞膜超极化时,电流诱发反应以及光诱发反应的幅度会增加,而当细胞去极化时,幅度会减小。这些结果直接证实,ON-OFF无长突细胞从ON和OFF双极细胞都接收兴奋性输入:ON瞬变是由于ON双极细胞的输入,而OFF瞬变是由于OFF双极细胞的输入。双极细胞的稳定极化在突触过程中被转换为瞬变信号。