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The kinetics of mechanical activation in frog muscle

机译:青蛙肌肉中机械激活的动力学

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摘要

1. The kinetics of mechanical activation were examined in muscle fibres of the frog's sartorius muscle, using a voltage clamp to control membrane potential, tetrodotoxin to eliminate electrical activity and microscopic observations to determine the mechanical threshold.2. The strength—duration curve was determined over a range of membrane potentials varying between -52 mV (rheobase) and +90 mV. At 4° C the critical duration was about 11 msec at -30 mV, 4 msec at 0 mV and 2 msec at +40 mV.3. For pulses where V > -10 mV the threshold criterion at 4° C was that the `area above -30 mV' must exceed about 120 mV msec.4. The effect of a brief subthreshold pulse declines with a time constant of about 3 msec at -100 mV and about 8 msec at -85 mV at 4° C.5. Although the strength—duration curve is well fitted by assuming a first-order mechanism in which the rate of release of activator increases with membrane potential, other experiments show that the over-all mechanism is probably second order in time.6. A short pulse must be at least 50% threshold if it is to give a visible contraction when added to a long pulse which is just below rheobase.7. Delayed rectification was conspicuous with medium or long pulses which were just below the mechanical threshold, but short pulses could give contraction without turning on any appreciable potassium conductance.8. The Appendix extends Falk's (1968) treatment of the charging of the tubular system under a voltage clamp.
机译:1.用电压钳控制膜电位,用河豚毒素消除电活动,并用显微镜观察确定机械阈值,检查青蛙缝线肌纤维中的机械激活动力学。2。在-52 mV(流变碱)和+90 mV之间变化的膜电位范围内确定了强度-持续时间曲线。在4°C时,临界持续时间在-30 mV时约为11毫秒,在0 mV时约为4毫秒,在+40 mV时约为2毫秒。对于V> -10 mV的脉冲,在4°C下的阈值标准是“ -30 mV以上的面积”必须超过约120 mV msec.4。在4°C.5时,短暂的亚阈值脉冲的影响在-100 mV处以约3毫秒的时间常数在-85 mV处以约8毫秒的时间常数下降。尽管强度-持续时间曲线通过假设一阶机制可以很好地拟合,其中活化剂的释放速率随膜电位的增加而增加,但其他实验表明总体机制在时间上可能是二阶的。6。如果将短脉冲添加到恰好低于流变碱的长脉冲上,则要产生可见的收缩,必须至少有50%的阈值7。整流延迟明显,中脉冲或长脉冲正好在机械阈值以下,但短脉冲可引起收缩,而不会打开任何明显的钾电导率。8。附录扩展了Falk(1968)在电压钳下对管状系统充电的方法。

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