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Some Relations between Action Potential and Resting Potential of the Lobster Giant Axon

机译:龙虾巨轴突的动作电位与静止电位之间的一些关系

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Experiments were performed to determine the quantitative relation existing between action potential and resting potential of the lobster giant axon. Resting potential changes were induced by either increasing the external potassium concentration or by reducing the external calcium concentration. For either treatment the action potential amplitude is proportional to the logarithm of the resting potential minus a constant. This constant is equivalent to the minimum resting potential at which a propagated spike is possible, and is larger for depolarization in low calcium than in high potassium. Thus the change in action potential per unit change in resting potential is greater in low external calcium than in high external potassium. Analog computer solutions to the Hodgkin-Huxley equations for squid axon membrane potentials show that, if the initial conditions are properly specified, the action potential is proportional to the logarithm of the potassium potential minus a constant. The experimental results and the analog computations suggest that reducing external calcium produces changes in the invertebrate axon that cannot be accounted for solely on the basis of alterations in the potassium potential.
机译:进行实验以确定龙虾巨型轴突的动作电位和静止电位之间存在的定量关系。静息电位的变化是通过增加外部钾浓度或通过降低外部钙浓度引起的。对于任何一种治疗,动作电位的幅度都与静息电位的对数减去一个常数成正比。该常数等于可能出现尖峰传播的最小静止电位,并且在低钙条件下的去极化作用要大于高钾条件下的去极化作用。因此,低外部钙比高外部钾的静息电位每单位变化的动作电位变化更大。针对鱿鱼轴突膜电位的霍奇金-赫克斯利方程的模拟计算机解决方案表明,如果正确指定了初始条件,则动作电位与钾电位的对数成常数成正比。实验结果和模拟计算表明,减少外部钙离子会导致无脊椎动物轴突发生变化,而这仅凭钾电势的变化无法解释。

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