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节肢动物光感受器中的统计学与量子涨落

Statistics and quantum bumps in arthropod photoreceptors.

作者信息

Yeandle S

出版信息

Fed Proc. 1985 Dec;44(15):2947-9.

PMID:2415402
Abstract

Discrete waves of depolarizing membrane potential in arthropod photoreceptors, called quantum bumps, appear to result from single-photon absorptions of the visual pigment. Statistical analysis of bump records suggest a model for bump occurrence in dark-adapted receptors at low levels of illumination. This model assumes that a photon that isomerizes a visual pigment molecule can trigger a stochastic process that can produce no more than one bump under normal conditions, and that the stochastic processes triggered by different isomerized visual pigment molecules are independent of each other.

摘要

节肢动物光感受器中去极化膜电位的离散波,称为量子 bumps,似乎是由视觉色素的单光子吸收引起的。对 bump 记录的统计分析提出了一个在低光照水平下暗适应感受器中 bump 发生的模型。该模型假设,使视觉色素分子异构化的一个光子可以触发一个随机过程,在正常情况下,该过程最多只能产生一个 bump,并且由不同异构化视觉色素分子触发的随机过程相互独立。

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