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本文引用的文献

1
The potassium and chloride conductance of frog muscle membrane.青蛙肌肉膜的钾离子和氯离子电导率。
J Physiol. 1962 Aug;163(1):61-103. doi: 10.1113/jphysiol.1962.sp006959.
2
The sodium-potassium hypothesis as the basis of electrical activity in frog ventricle.钠钾假说作为蛙心室电活动的基础。
J Physiol. 1960 Dec;154(2):385-407. doi: 10.1113/jphysiol.1960.sp006586.
3
The components of membrane conductance in the giant axon of Loligo.枪乌贼巨大轴突膜电导的组成成分。
J Physiol. 1952 Apr;116(4):473-96. doi: 10.1113/jphysiol.1952.sp004718.
4
The voltage dependence of the cardiac membrane conductance.心肌膜电导的电压依赖性。
Biophys J. 1962 Sep;2(5):381-93. doi: 10.1016/s0006-3495(62)86862-3.
5
A modification of the Hodgkin--Huxley equations applicable to Purkinje fibre action and pace-maker potentials.一种适用于浦肯野纤维动作电位和起搏电位的霍奇金-赫胥黎方程的修正。
J Physiol. 1962 Feb;160(2):317-52. doi: 10.1113/jphysiol.1962.sp006849.
6
The influence of potassium and chloride ions on the membrane potential of single muscle fibres.钾离子和氯离子对单根肌纤维膜电位的影响。
J Physiol. 1959 Oct;148(1):127-60. doi: 10.1113/jphysiol.1959.sp006278.
7
The effect of the cardiac membrane potential on the rapid availability of the sodium-carrying system.心脏膜电位对钠转运系统快速可用性的影响。
J Physiol. 1955 Jan 28;127(1):213-24. doi: 10.1113/jphysiol.1955.sp005250.
8
ANOMALOUS RECTIFICATION IN THE SQUID GIANT AXON INJECTED WITH TETRAETHYLAMMONIUM CHLORIDE.注射氯化四乙铵的乌贼巨轴突中的反常整流
J Gen Physiol. 1965 May;48(5):859-72. doi: 10.1085/jgp.48.5.859.
9
IONIC CURRENTS IN CARDIAC EXCITATION.心脏兴奋中的离子电流
Pflugers Arch Gesamte Physiol Menschen Tiere. 1964 Jun 9;280:63-80. doi: 10.1007/BF00412616.
10
VOLTAGE CLAMP TECHNIQUE IN MAMMALIAN CARDIAC FIBRES.哺乳动物心脏纤维中的电压钳技术。
Pflugers Arch Gesamte Physiol Menschen Tiere. 1964 Jun 9;280:50-62. doi: 10.1007/BF00412615.

在心脏浦肯野纤维动作电位平台期激活的外向膜电流。

Outward membrane currents activated in the plateau range of potentials in cardiac Purkinje fibres.

作者信息

Noble D, Tsien R W

出版信息

J Physiol. 1969 Jan;200(1):205-31. doi: 10.1113/jphysiol.1969.sp008689.

DOI:10.1113/jphysiol.1969.sp008689
PMID:5761944
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1350425/
Abstract
  1. The membrane currents in Purkinje fibres under voltage clamp conditions have been investigated in the range of potentials at which the action potential plateau occurs. The results show that in this range slow outward current changes occur which are quite distinct from the potassium current activated in the pace-maker range of potentials.2. The time course of current change in response to step voltage changes is non-exponential. At each potential the current changes may be analysed in terms of the sum of two exponential changes and this property has been used to dissect the currents into two components, i(x1) and i(x2), both of which have been found to obey kinetics of the Hodgkin-Huxley type.3. The first component, i(x1), is activated with a time constant of about 0.5 sec at the plateau. At more positive and more negative potentials the time constants are shorter. The steady-state degree of activation varies from 0 at about -50 mV to about 1 at +20 mV. The instantaneous current-voltage relation is an inward-going rectifier but shows no detectable negative slope. In normal Tyrode solution (K = 4 mM) the reversal potential is about -85 mV.4. The second component, i(x2), is activated extremely slowly and the time constant at the plateau is about 4 sec. The steady-state activation curve varies from 0 at about -40 mV to 1 at about +20 mV. The instantaneous current-voltage relation is nearly linear. The reversal potential occurs between -50 and -20 mV in different preparations.5. It is suggested that these currents are carried largely by K ions, but that some other ions (e.g. Na) also contribute so that the reversal potentials are positive to E(K).6. The relation of these results to previous work on delayed rectification in cardiac muscle is discussed.
摘要
  1. 研究了浦肯野纤维在电压钳制条件下,动作电位平台期电位范围内的膜电流。结果表明,在此电位范围内,出现缓慢的外向电流变化,这与在起搏电位范围内激活的钾电流明显不同。

  2. 响应阶跃电压变化的电流变化的时间进程是非指数性的。在每个电位下,电流变化可根据两个指数变化之和进行分析,利用这一特性将电流分为两个成分,即i(x1)和i(x2),发现这两个成分均符合霍奇金-赫胥黎类型的动力学。

  3. 第一个成分i(x1)在平台期以约0.5秒的时间常数被激活。在更正和更负的电位下,时间常数更短。稳态激活程度在约-50mV时为0,在+20mV时约为1。瞬时电流-电压关系是内向整流,但未显示出可检测到的负斜率。在正常的台氏液(K=4mM)中,反转电位约为-85mV。

  4. 第二个成分i(x2)激活极其缓慢,在平台期的时间常数约为4秒。稳态激活曲线在约-40mV时为0,在约+20mV时为1。瞬时电流-电压关系几乎是线性的。在不同的标本中,反转电位出现在-50mV至-20mV之间。

  5. 提示这些电流主要由K离子携带,但也有一些其他离子(如Na)参与,因此反转电位对E(K)为正。

  6. 讨论了这些结果与先前关于心肌延迟整流的研究工作的关系。