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兔有髓神经膜电流的定量描述。

A quantitative description of membrane currents in rabbit myelinated nerve.

作者信息

Chiu S Y, Ritchie J M, Rogart R B, Stagg D

出版信息

J Physiol. 1979 Jul;292:149-66. doi: 10.1113/jphysiol.1979.sp012843.

DOI:10.1113/jphysiol.1979.sp012843
PMID:314974
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1280850/
Abstract
  1. Voltage-clamp studies were carried out on single rabbit myelinated nerve fibres at 14 degrees C with the method of Dodge & Frankenhaeuser (1958). 2. A method was developed to allow the ionic currents through the modal membrane to be calibrated exactly under voltage-clamp conditions by measuring the resistance of the internode through which the current was injected. 3. The ionic currents in a rabbit node of Ranvier can be resolved into two components, a sodium current and a leak current. Potassium current is almost entirely absent. 4. The sodium currents in rabbit nodes were fitted by the Hodgkin-Huxley model using m2h kinetics. The kinetics of sodium currents in a rabbit node differ from that in a frog node under similar experimental conditions in two respects: (a) inactivation is faster, tau h for rabbit being 2-3 times smaller around -50 mV; (b) the P(Na) (E) curve for mammal is shifted 10-15 mV in the hyperpolarizing direction. 5. From the kinetics of sodium current, the non-propagating rabbit action potential was reconstructed at 14 degrees C. The transient inward sodium current is responsible for the fast initial depolarization phase of the action potential, while the repolarizing phase is accounted for by leak alone. The computed shape of the action potential was in good agreement with the experimentally obtained action potential. 6. At 14 degrees C, frog and rabbit nodes with similar diameters have similar measured gNa values.
摘要
  1. 采用道奇和弗兰肯豪泽(1958年)的方法,在14摄氏度下对单个兔有髓神经纤维进行了电压钳研究。2. 开发了一种方法,通过测量注入电流的节间电阻,在电压钳条件下精确校准通过模态膜的离子电流。3. 兔郎飞结处的离子电流可分为两个成分,一个钠电流和一个漏电流。几乎完全没有钾电流。4. 兔结处的钠电流用霍奇金-赫胥黎模型以m2h动力学进行拟合。在相似的实验条件下,兔结处钠电流的动力学在两个方面与蛙结处不同:(a)失活更快,在-50 mV左右,兔的τh比蛙小2 - 3倍;(b)哺乳动物的P(Na)(E)曲线在超极化方向上移动了10 - 15 mV。5. 根据钠电流的动力学,在14摄氏度下重建了兔的非传播性动作电位。瞬时内向钠电流负责动作电位快速的初始去极化阶段,而复极化阶段仅由漏电流引起。计算得到的动作电位形状与实验获得的动作电位非常吻合。6. 在14摄氏度时,直径相似的蛙和兔结具有相似的测量gNa值。

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本文引用的文献

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Current-voltage relations in the lobster giant axon membrane under voltage clamp conditions.电压钳制条件下龙虾巨轴突膜的电流-电压关系
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