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蝗虫光感受器中增益适应的非线性机制。

Nonlinear mechanisms for gain adaptation in locust photoreceptors.

作者信息

Pece A E, French A S, Korenberg M J, Kuster J E

机构信息

Department of Physiology, University of Alberta, Edmonton, Canada.

出版信息

Biophys J. 1990 Apr;57(4):733-43. doi: 10.1016/S0006-3495(90)82594-7.

Abstract

Intracellular membrane potential responses were recorded from locust photoreceptors under two stimulus conditions: pairs of flashes to dark-adapted receptors, and white-noise modulated light at a range of background intensities from 500 to 15,000 effective photons per second. Nonlinear analysis of the input-output relationships were performed by estimating the Volterra and Wiener kernels of the system. The Volterra kernels obtained from the double-flash experiments were similar to the Wiener kernels obtained from the white-noise experiments, except for a change of time scale. The structure of the second-order kernels obtained with either method gave evidence for a gain control mechanism acting at an early stage of the cascade. Both feedforward and feedback nonlinearities could account for the observed system behavior at any one background level. The differences in amplitude between the kernels obtained at different background levels could be accounted for by an adaptation process which further decreased the gain of the system, acting on a slower time scale, also at some early stage of the cascade.

摘要

在两种刺激条件下记录蝗虫光感受器的细胞内膜电位反应

对暗适应感受器的成对闪光,以及在每秒500至15000个有效光子的一系列背景强度下的白噪声调制光。通过估计系统的沃尔泰拉核和维纳核来对输入-输出关系进行非线性分析。除了时间尺度的变化外,从双闪光实验获得的沃尔泰拉核与从白噪声实验获得的维纳核相似。用这两种方法获得的二阶核的结构都为在级联早期起作用的增益控制机制提供了证据。前馈和反馈非线性都可以解释在任何一个背景水平下观察到的系统行为。在不同背景水平下获得的核之间的幅度差异可以通过一个适应过程来解释,该过程在级联的某个早期阶段也以较慢的时间尺度进一步降低系统的增益。

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本文引用的文献

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Phototransduction. A role for calcium in adaptation.
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