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引发禽类睫状神经节神经元量子传递的突触前钙电流。

Presynaptic calcium currents evoking quantal transmission from avian ciliary ganglion neurons.

作者信息

Brosius D C, Hackett J T, Tuttle J B

机构信息

Department of Physiology, University of Virginia Health Science Center, Charlottesville 22908.

出版信息

Synapse. 1990;5(4):313-23. doi: 10.1002/syn.890050408.

Abstract

Using whole-cell patch clamp techniques, we simultaneously recorded presynaptic Ca++ current and excitatory postsynaptic currents (EPSCs) from avian neuromuscular junctions in culture. Quantal synaptic transmission was proportional to evoked presynaptic Ca++ current except with large stimuli, which evoked bursts of quanta, reflecting a shift to synchronized release. Synaptic delay, measured from the onset of presynaptic depolarization to the appearance of the first postsynaptic quantal response, was often greater than 100 msec for weak depolarizations but declined as stimulus intensity was increased. Quantal events evoked by Ca++ tail currents had a mean synaptic delay of 1.67 msec. The single type of presynaptic Ca++ current observed displayed an inactivation time constant of greater than 100 msec and tail currents well fit by a single exponential function.

摘要

运用全细胞膜片钳技术,我们同时记录了培养的禽类神经肌肉接头处的突触前钙离子电流和兴奋性突触后电流(EPSCs)。除了大刺激引发量子爆发(反映出向同步释放的转变)的情况外,量子突触传递与诱发的突触前钙离子电流成正比。突触延迟,即从突触前去极化开始到第一个突触后量子反应出现的时间,对于弱去极化通常大于100毫秒,但随着刺激强度增加而减小。由钙离子尾电流诱发的量子事件平均突触延迟为1.67毫秒。观察到的单一类型突触前钙离子电流显示出大于100毫秒的失活时间常数,且尾电流很好地拟合为单一指数函数。

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