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Kinetic analysis of the delayed outward currents in frog atrium. Existence of two types of preparation

机译:青蛙心房延迟外向电流的动力学分析。存在两种类型的准备

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摘要

1. The outward currents underlying delayed rectification have been studied in frog auricular trabeculae with the double sucrose gap method.2. The results obtained in our experimental conditions allow us to discard the hypothesis of an accumulation of ions during the flow of the outward current.3. In most of the cases the delayed current is composed of two components similar to those previously described by Noble & Tsien (1969a, b).4. The first component I1 is activated with a time constant of about 0·3 sec at the resting potential (E = - 70 mV) and of about 0·75 sec at E = - 5 mV. The steady-state value of the degree of activation (x1)∞ varies from 0 at E = - 90 mV to 1 at E = + 20 mV. The reversal potential is near E = - 80 mV; this current seems to be mainly carried by potassium ions.5. The second component I2 is very slowly activated, with a time constant of 3·5 sec at E = - 70 mV and of 5 sec at E = - 5 mV. The steady-state value of the degree of activation (x2)∞ varies from 0 at E = - 40 mV to 1 at E = + 25 mV. The reversal potential is near E = - 60 mV; this current is less specific than the first component.6. In some preparations the delayed current is composed of only one component. This current is activated with a time constant of 0·6 sec at the resting potential and of 1·5 sec at E = - 5 mV. The steady-state value of the degree of activation is 0 at E = - 90 mV and 1 at E = + 30 mV. The reversal potential is between E = - 70 and E = - 60 mV.7. The role of these currents in the processes of repolarization of normal and prolonged action potentials, and in the pace-making activity is discussed.
机译:1.用双蔗糖间隙法研究了青蛙耳小梁中延迟整流的外向电流。在我们的实验条件下获得的结果使我们可以抛弃外向电流流动过程中离子积累的假设。3。在大多数情况下,延迟电流由类似于Noble&Tsien(1969a,b).4先前描述的两个分量组成。在静止电势(E =-70 mV)时,第一组件I1的时间常数约为0.3 sec;在E =-5 mV时,第一组件I1的时间常数约为0.75 sec。激活度(x1)∞的稳态值从E =-90 mV时的0到E = + 20 mV时的1变化。反转电位接近E =-80 mV;该电流似乎主要由钾离子携带。5。第二分量I2的激活非常缓慢,在E =-70 mV时的时间常数为3·5秒,在E =-5 mV时的时间常数为5秒。激活度(x2)∞的稳态值从E =-40 mV时的0到E = + 25 mV时的1变化。反转电位接近E =-60 mV;该电流不如第一部分具体。6。在某些准备工作中,延迟电流仅由一个分量组成。该电流在静止电位下的时间常数为0·6秒,在E =-5 mV时的时间常数为1·5秒。激活度的稳态值在 E =-90 mV时为0,在 E = + 30 mV时为1。反转电位在 E =-70和 E =-60 mV.7之间。讨论了这些电流在正常和长时间动作电位的重新极化过程中以及在起搏活动中的作用。

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