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Effect of Current on Transmembrane Potentials in Cultured Chick Heart Cells

机译:电流对培养的小鸡心脏细胞跨膜电位的影响

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By means of a DC bridge circuit one microelectrode was used for simultaneously passing current and recording transmembrane potentials. In some cells, depolarization increased the frequency of discharge whereas hyperpolarization decreased the frequency; the frequency/current relation was sigmoid. In other cells, polarizing currents were without effect upon frequency. The change in action potential magnitude was in proportion to the degree of polarization. From control values of about 5 mv/sec., the slope of the pacemaker potential increased to 60 mv/sec. upon depolarization and diminished to zero upon hyperpolarization. In many cells a transient hyperpolarization was produced on the cessation of depolarizing currents. The voltage/current relationship was linear and had a slope of about 13 MΩ. With an AC bridge circuit, the cell capacitance averaged 800 pf and the time constant, 9.6 msec. Rm was estimated to be 480 Ω-cm2 and Cm , 20 μf/cm2. The magnitudes of some prepotentials were affected by polarizing currents, which suggests that the prepotentials represent postsynaptic potentials.
机译:通过直流电桥电路,一个微电极用于同时通过电流并记录跨膜电位。在某些电池中,去极化会增加放电频率,而超极化会降低放电频率。频率/电流关系为S形。在其他电池中,极化电流对频率没有影响。动作电位幅度的变化与极化程度成正比。从大约5毫伏/秒的控制值起搏器电位的斜率增加到60毫伏/秒。在去极化时减小,在超极化时减小到零。在许多电池中,终止去极化电流会产生瞬时的超极化。电压/电流关系为线性,斜率约为13MΩ。使用交流电桥电路,电池电容平均为800 pf,时间常数为9.6毫秒。 Rm估计为480Ω-cm2,Cm为20μf/ cm2。一些电位的大小受到极化电流的影响,这表明该电位代表突触后电位。

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