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龟视锥细胞对闪光和光阶跃的电反应重建。

Reconstruction of the electrical responses of turtle cones to flashes and steps of light.

作者信息

Baylor D A, Hodgkin A L, Lamb T D

出版信息

J Physiol. 1974 Nov;242(3):759-91. doi: 10.1113/jphysiol.1974.sp010733.

Abstract
  1. Theoretical equations which predict the electrical response of turtle cones to a wide range of light stimuli are developed from the experiments described in previous papers.2. The central points in the theory are that (a) light starts a chain of reactions leading to the production of a substance which blocks ionic channels in the outer segment, (b) an equilibrium between blocking molecules and open channels is rapidly established, (c) the blocking molecules are removed or inactivated by a chain of reactions, the first of which is autocatalytic, (d) in addition to the conductance which decreases with light there is also a conductance which increases with a delay when the cone is hyperpolarized.3. Parameters in the theory were deduced by approximate equations from the experiments described in the previous papers.4. There was good agreement between the properties of real and model cones in the following cases: (a) the response to 10 msec flashes and 0.7 sec steps of light calculated to give between 20 and 5 x 10(7) photoisomerizations per cone at times extending to about 2 sec; (b) the complicated changes in the response to a test flash that occur when it is superposed on background lights of increasing intensity; (c) the after-hyperpolarization and period of reduced sensitivity following a strong flash.5. The main defect of the theory is that the effect of background light in shortening the time to maximum of the response to a flash was more pronounced in a real cone than in the model.
摘要
  1. 根据前文所述实验,推导出了预测龟视锥细胞对多种光刺激电反应的理论方程。

  2. 该理论的要点如下:(a) 光引发一系列反应,导致产生一种能阻断外段离子通道的物质;(b) 阻断分子与开放通道之间迅速建立平衡;(c) 阻断分子通过一系列反应被去除或失活,其中第一个反应是自催化反应;(d) 除了随光减弱的电导外,当视锥细胞超极化时,还存在一个延迟增加的电导。

  3. 该理论中的参数由前文所述实验的近似方程推导得出。

  4. 在以下几种情况下,真实视锥细胞和模型视锥细胞的特性吻合度良好:(a) 对10毫秒闪光和0.7秒光阶跃的反应,计算得出在长达约2秒的时间内,每个视锥细胞的光异构化次数在20至5×10⁷之间;(b) 当测试闪光叠加在强度不断增加的背景光上时,对测试闪光反应的复杂变化;(c) 强闪光后的超极化后电位和敏感性降低期。

  5. 该理论的主要缺陷在于,背景光缩短闪光反应达到最大值时间的效应,在真实视锥细胞中比在模型中更为明显。

相似文献

4
Analysis of electrical noise in turtle cones.龟视锥细胞电噪声分析。
J Physiol. 1977 Nov;272(2):435-68. doi: 10.1113/jphysiol.1977.sp012053.
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Electrical responses of double cones in the turtle retina.龟视网膜中双锥细胞的电反应。
J Physiol. 1974 Nov;242(3):673-83. doi: 10.1113/jphysiol.1974.sp010730.

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