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鲶鱼视网膜的适应性。

Adaptation in catfish retina.

作者信息

Naka K I, Chan R Y, Yasui S

出版信息

J Neurophysiol. 1979 Mar;42(2):441-54. doi: 10.1152/jn.1979.42.2.441.

Abstract
  1. We define absolute sensitivity as (voltage/illuminance) and incremental sensitivity as the peak-to-peak amplitude of the first-order (Wiener) kernels. 2. Incremental sensitivity of the horizontal cells is the local slopes of the Michaelis-Menten equation and that of more proximal neurons is the Fechner slope. In a log-log plot, the former has a slope of -2, whereas the latter a slope of -1, as predicted by Williams and Gale (39). 3. During a moderate to strong steady illumination, absolute sensitivity decreases but incremental sensitivity increases. The reverse occurs during dark adaptation. 4. The presence of a steady illumination did not prevent signal transmission from horizontal to ganglion cells. 5. From these results we conclude that: adaptation in the catfish retina includes two components: a) a lateral shift of the voltage-intensity curve along the intensity axis, and b) changes in the time course of light-evoked response. We argue that the latter phenomenon is related to the presumed horizontal cell-to-receptor cell negative feedback.
摘要
  1. 我们将绝对敏感度定义为(电压/照度),将增量敏感度定义为一阶(维纳)核的峰峰值幅度。2. 水平细胞的增量敏感度是米氏方程的局部斜率,而更靠近近端的神经元的增量敏感度是费希纳斜率。在双对数图中,前者的斜率为 -2,而后者的斜率为 -1,正如威廉姆斯和盖尔所预测的那样(39)。3. 在中度到强烈的稳定光照期间,绝对敏感度降低,但增量敏感度增加。在暗适应期间则相反。4. 稳定光照的存在并未阻止信号从水平细胞向神经节细胞的传递。5. 从这些结果我们得出结论:鲶鱼视网膜中的适应包括两个成分:a)电压-强度曲线沿强度轴的横向移动,以及b)光诱发反应时间进程的变化。我们认为后一种现象与假定的水平细胞到感受器细胞的负反馈有关。

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