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电压依赖性钙和钾离子电导:一种联想学习模型的应急机制。

Voltage-dependent calcium and potassium ion conductances: a contingency mechanism for an associative learning model.

作者信息

Alkon D L

出版信息

Science. 1979 Aug 24;205(4408):810-6. doi: 10.1126/science.223244.

Abstract

Persistent light-induced depolarization results from Ca2+ influx across a photoreceptor membrane. The marked dependence on potential of this Ca2+ influx and a Ca+-dependent K+ efflux accounts for enhancement of the light-induced depolarization when light is paired with rotation. A positive feedback cycle between light-induced depolarization and synaptic depolarization due to stimulus pairing can explain long-lasting behavioral changes produced by associative training but not control paradigms. The sensitivity of this Ca2+ influx to intracellular levels of adenosine 3'-5'-monophosphate suggests biochemical steps for this model of associative learning.

摘要

持续的光诱导去极化是由钙离子跨光感受器膜内流引起的。这种钙离子内流对电位的显著依赖性以及钙离子依赖性钾离子外流,解释了光与旋转配对时光诱导去极化的增强现象。由于刺激配对,光诱导去极化和突触去极化之间的正反馈循环可以解释联想训练产生的持久行为变化,但不能解释对照范式。这种钙离子内流对细胞内3'-5'-单磷酸腺苷水平的敏感性为这种联想学习模型提供了生化步骤。

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