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大鼠Ⅲ型视网膜反应中的光适应和温度效应:基于双态模型的分析

Light adaptation and temperature effects in rat PIII retinal response: analysis with a two-state model.

作者信息

Gale J G, Williams T P

出版信息

Proc Natl Acad Sci U S A. 1980 Jul;77(7):4021-5. doi: 10.1073/pnas.77.7.4021.

Abstract

Aspartate-isolated PIII responses from excised perfused retinas of albino rats were studied, with emphasis on background adaptation and temperature effects. When responses are measured at their peaks, it is seen that the proportion of response elicited by the background is equal to the proportion by which a test-flash response is suppressed. This supports the notion that rat PIII, although a complex response, seems to approximate a simple two-state ("compression") system and that it is therefore subject to analysis according to our recently proposed model. This model predicts that (i) responses from two-state systems should increase with decreasing temperature within limits; (ii) delta, the semisaturation constant of voltage--log intensity functions should shift to lower intensities with decreasing temperature; and (iii) the exact magnitude of the delta shift should follow the temperature dependence of the rate of rapid "neural" adaptation of the response. All of these predictions are verified for rat PIII. This suggests that rat PIII, although produced by at least two cell types, is being controlled by only two processes: a light-driven excitation and a rapid first-order "neural" dark adaptation.

摘要

对白化大鼠离体灌注视网膜中分离出的天冬氨酸诱导的PIII反应进行了研究,重点关注背景适应和温度效应。当在反应峰值处进行测量时,可以看到由背景引发的反应比例与测试闪光反应被抑制的比例相等。这支持了这样一种观点,即大鼠的PIII虽然是一种复杂反应,但似乎近似于一个简单的双态(“压缩”)系统,因此可以根据我们最近提出的模型进行分析。该模型预测:(i)双态系统的反应在一定限度内应随温度降低而增加;(ii)电压-对数强度函数的半饱和常数δ应随温度降低而向较低强度偏移;(iii)δ偏移的确切幅度应遵循反应快速“神经”适应速率的温度依赖性。所有这些预测都在大鼠PIII中得到了验证。这表明大鼠的PIII虽然由至少两种细胞类型产生,但仅受两个过程控制:光驱动的兴奋和快速的一级“神经”暗适应。

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