Cohen I, van der Kloot W, Attwell D
Brain Res. 1981 Oct 26;223(1):185-9. doi: 10.1016/0006-8993(81)90821-0.
Many chemical transmitters act by opening channels with exponentially distributed life-times. We present a way to analyze a synaptic current in terms of its component channels. We can estimate the numbers and times of channel opening within the synaptic current. This approach is used to study miniature end-plate currents (m.e.p.c.s) at the frog neuromuscular junction. The results support the idea that some transmitter rebinds after dissociation from post-synaptic receptors, and suggest that the time of channel closing is related to the time at which acetylcholine leaves the receptor.
许多化学递质通过打开具有指数分布寿命的通道来发挥作用。我们提出了一种根据其组成通道来分析突触电流的方法。我们可以估计突触电流内通道开放的数量和时间。这种方法用于研究青蛙神经肌肉接头处的微小终板电流(m.e.p.c.s)。结果支持了一些递质从突触后受体解离后会重新结合的观点,并表明通道关闭时间与乙酰胆碱离开受体的时间有关。