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首页> 外文期刊>The Journal of general physiology >EFFECTS OF EXTERNAL IONS ON MEMBRANE POTENTIALS OF A CRAYFISH GIANT AXON
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EFFECTS OF EXTERNAL IONS ON MEMBRANE POTENTIALS OF A CRAYFISH GIANT AXON

机译:外部离子对小巨人轴突膜电位的影响

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Transmembrane potentials in the crayfish giant axon have been investigated as a function of the concentration of normally occurring external cations. Results have been compared with data already available for the lobster and squid giant axons. The magnitude of the action potential was shown to be a linear function of the log of the external sodium concentration, as would be predicted for an ideal sodium electrode. The resting potential is an inverse function of the external potassium concentration, but behaves as an ideal potassium electrode only at the higher external concentrations of potassium. Decrease in external calcium results in a decrease in both resting potential and action potential; an increase in external calcium above normal has no effect on magnitude of transmembrane potentials. Magnesium can partially substitute for calcium in the maintenance of normal action potential magnitude, but appears to have very little effect on resting potential. All ionic effects studied are completely reversible. The results are in generally good agreement with data presently available for the lobster giant axon and for the squid giant axon.
机译:已经研究了小龙虾巨型轴突中的跨膜电位与正常存在的外部阳离子浓度的关系。将结果与龙虾和鱿鱼巨型轴突的现有数据进行了比较。动作电位的大小显示为外部钠浓度的对数的线性函数,如理想的钠电极所预测的那样。静息电位是外部钾离子浓度的反函数,但仅在较高外部钾离子浓度下,它才是理想的钾电极。外部钙的减少导致静息电位和动作电位的降低;外部钙的增加超过正常值对跨膜电位的大小没有影响。镁可以部分替代钙,以维持正常的动作电位幅度,但似乎对静息电位影响很小。研究的所有离子效应都是完全可逆的。结果总体上与目前可用于龙虾巨轴突和鱿鱼巨轴突的数据良好吻合。

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