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The effect of tetanic and post-tetanic potentiation on facilitation of transmitter release at the frog neuromuscular junction

机译:强直和强直后增强对青蛙神经肌肉交界处递质释放的促进作用

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摘要

1. End-plate potentials (e.p.p.s) were recorded from frog neuromuscular junctions blocked with high Mg and/or low Ca.2. Estimates of f(t), the facilitation contributed by each impulse, were obtained during and following repetitive stimulation from the incremental change in e.p.p. amplitudes following step changes in the stimulation rate during the conditioning and testing trains.3. Estimates of f(t) increased during the conditioning stimulation and returned to control in the post-tetanic period. This increase in f(t) was proportional to the magnitude of tetanic or post-tetanic potentiation (PTP) present.4. These results are described by: [Formula: see text] where h(t)/hc is the e.p.p. amplitude at time t expressed in terms of the control, P(t) is potentiation, F(t) is facilitation and 1 is the base level of transmitter release. Thus, potentiation has a multiplicative (gain) effect on facilitation and the base level of transmitter release.5. PTP was present immediately following the conditioning train. However, if depression occurred during the conditioning train, PTP developed after a delay.6. It is suggested that facilitation and potentiation represent increases in two independent factors which act jointly to increase the probability of transmitter release.
机译:1.记录了由高Mg和/或低Ca阻断的青蛙神经肌肉连接处的终板电位(e.p.p.s)。 f(t)的估算值是每次冲动的促进作用,是在重复刺激期间和之后从e.p.p.调节和测试过程中刺激速率的阶跃变化后的振幅3。 f(t)的估计值在条件刺激过程中增加,并在后强直时期恢复控制。 f(t)的增加与存在的强直性或强直性增强的强度成正比。4。这些结果描述如下:[公式:参见文字]其中h(t)/ hc是e.p.p。时间t的振幅用控制表示,P(t)是增强作用,F(t)是促进作用,1是变送器释放的基准水平。因此,增强作用对促进作用和递质释放的基本水平具有乘性(增益)作用。5。 PTP在紧接训练后立即出现。但是,如果在调节过程中出现了沮丧情绪,则PTP会在延迟后发展。6。建议促进和增强代表两个独立因素的增加,这两个因素共同作用以增加发射机释放的可能性。

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