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关于去神经支配和pH对青蛙神经肌肉接头处电导变化影响的进一步研究。

Further investigations on the effect of denervation and pH on the conductance change at the neuromuscular junction of the frog.

作者信息

Trautmann A, Zilber-Gachelin N F

出版信息

Pflugers Arch. 1976 Jun 29;364(1):53-8. doi: 10.1007/BF01062911.

Abstract

Currents induced by acetylcholine application at the voltage-calmped frog end-plate, were measured over a large range of membrane potentials. Due to a non-linearity of the current-voltage curve, the directly-measured reversal potential may be quite different from the value classically determined by extrapolation (linear regression) of the measurements made at potentials below spike threshold. Denervation and changes of external pH were found to alter the shape of the current-voltage relation, but not the directly-measured reversal potential. These effects are tentatively explained on the basis of changes in the ratio: time-to-peak for [ACh] reaching the receptors/mean life-time of the open synaptic channels. Possible changes in cooperativity are also considered.

摘要

在电压钳制的青蛙终板上施加乙酰胆碱所诱导的电流,是在很宽的膜电位范围内进行测量的。由于电流-电压曲线的非线性,直接测量的反转电位可能与通过低于动作电位阈值时测量值的外推法(线性回归)经典确定的值有很大差异。发现去神经支配和外部pH值的变化会改变电流-电压关系的形状,但不会改变直接测量的反转电位。这些效应初步基于以下比率的变化来解释:乙酰胆碱到达受体的峰值时间/开放突触通道的平均寿命。还考虑了协同性的可能变化。

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