Parnas I, Dudel J, Parnas H
Neurosci Lett. 1984 Sep 7;50(1-3):157-62. doi: 10.1016/0304-3940(84)90479-8.
Quantal synaptic currents were recorded at nerve terminals on the crayfish opener muscle by means of a macro-patch-clamp electrode. Release could be elicited by graded depolarization pulses through the recording electrode. At low temperature, distributions of delays of single quantal currents from the onset of depolarization were determined for depolarizations varying from threshold to saturation range. This time course of release was little affected by the amplitude of depolarization: There was a tendency for release to start earlier and to rise faster for larger depolarizations, while the termination of release showed no significant variations. The time course of release after an action potential in the motor axon was similar to that of release after a depolarization pulse. It is concluded that the time course of quantal release is rather independent of amplitude of depolarization and of the amount of calcium (Ca) inflow, which seems to rule out the control of the release after a depolarization by the time course of [Ca]i.
通过一个宏膜片钳电极在小龙虾开肌的神经末梢记录量子突触电流。通过记录电极的分级去极化脉冲可引发释放。在低温下,对于从阈值到饱和范围变化的去极化,测定了单个量子电流从去极化开始的延迟分布。释放的这个时间进程几乎不受去极化幅度的影响:对于较大的去极化,释放有更早开始且上升更快的趋势,而释放的终止没有显著变化。运动轴突动作电位后的释放时间进程与去极化脉冲后的释放时间进程相似。得出的结论是,量子释放的时间进程相当独立于去极化幅度和钙(Ca)内流的量,这似乎排除了通过[Ca]i的时间进程对去极化后释放的控制。