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Effects of low temperature on the positive dynamic current of cardiac Purkinje fibres

机译:低温对心脏浦肯野纤维正动态电流的影响

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摘要

1. The effects of low temperature on the positive dynamic current (mainly Cl- current) of sheep cardiac Purkinje fibres were studied using the `voltage clamp' technique.2. Cooling of Purkinje fibres from 37° C to room temperature (25° C) slowed the time course of the current and decreased its peak amplitude. The Q10 of the decay of the current was 2·67 over 25-37° C. Removal of inactivation was also delayed and the Q10 of the rate constant was 2·62 over 30-37° C.3. The decreased peak amplitude of the current on cooling could not be restored by pre-step hyperpolarization. Thus the curve for the steady-state inactivation was simply depressed downward. The Q10 of the maximum current response was 3·05 over 25-37° C.4. During deep hypothermia (less than 10° C), no Cl- current was demonstrated by depolarization up to + 60 mV.5. The high sensitivity to temperature suggests that the current contributes significantly to the prolongation of action potentials during low temperature, but its quantitative role cannot be evaluated without simultaneous evaluation of other plateau currents.
机译:1.采用“电压钳”技术研究了低温对绵羊心脏浦肯野纤维正动态电流(主要是Cl -电流)的影响。将Purkinje纤维从37°C冷却到室温(25°C)会减慢电流的时间进程并降低其峰值幅度。电流衰减的Q10在25-37°C时为2·67。失活的去除也被延迟,速率常数的Q10在30-37°C时为2·62。冷却时电流降低的峰值幅度无法通过前期超极化恢复。因此,稳态灭活的曲线简单地向下压。在25-37°C时,最大电流响应的Q10为3·05。在深低温(低于10°C)下,去极化至+ 60 mV时未显示Cl -电流。5。对温度的高敏感性表明,电流在低温期间对动作电位的延长有很大贡献,但是如果不同时评估其他平稳电流,就无法评估其定量作用。

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