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Space and time characteristics of transmitter release at the nerve-electroplaque junction of Torpedo.

机译:发射器在鱼雷的神经-电斑连接处释放的时空特性。

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摘要

1. A loose patch electrode was used to stimulate axon terminals and to record evoked electroplaque currents (EPCs) in a limited area of innervated membrane of the electric organ of Torpedo marmorata. Electrophysiological signals were compared to the predictions of a semi-quantitative model of synaptic transmission which was designed to simulate the release of several packets of neurotransmitter molecules, at the same or at different sites of the synapse, synchronously or with various temporal patterns. 2. The amplitude distribution of EPCs evoked by activation of nerve terminals showed quantal steps. The time to peak of EPCs was in most cases independent of amplitude, but in their decaying phase a positive correlation was seen between half-decay time and amplitude. Comparison with the model suggested that (i) a dynamic interaction occurred at the end of the EPC between the fields of postsynaptic membrane activated by individual quanta, and (ii) the sites of quantal release in the electric organ are separated from each other by 600-1000 nm. 3. Spontaneous miniature electroplaque potentials (MEPPs) were recorded externally with the same type of loose patch electrode. The majority (75%) of external MEPPs displayed a homogeneous and rapid time course. This fast MEPP population had a mean time to peak of 0.43 ms, a half-decay time of 0.45 ms and a time constant of decay of 0.35 ms. 4. Despite homogeneous characteristics of time course, fast MEPPs exhibited a wide amplitude distribution with a main population which could be fitted by a Gaussian curve around 1 mV, and another population of small amplitude. Both the time-to-peak and the half-decay time of fast MEPPs showed a positive correlation with the amplitude from the smallest to the largest events. Acetylcholinesterase was not blocked. 5. In addition to the fast MEPPs, spontaneous signals exhibiting a slow rate of rise, or a slow rate of decay, or both were observed. They occurred at any time during the experiment, independently of the overall frequency. Approximately 15% of the total number of events had a slow rise but their decay phase was nevertheless rapid and could be ascribed to the kinetics of receptors. These slow-rising MEPPs exhibited a variety of conformations: slow but smooth rise, sudden change of slope and sometimes several bumps or inflexions. Their average amplitude was significantly smaller than that of the main population of fast MEPPs. 6. Composite MEPPs with multiple peaks as well as bursts of small MEPPs were often encountered, even during periods of low frequency.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.用一块松散的贴片电极刺激轴突末端,并在水mar鱼电器官的神经膜的有限区域内记录诱发的斑块电流(EPC)。将电生理信号与突触传递的半定量模型的预测结果进行比较,该模型被设计为模拟在突触的相同或不同位置同步或以各种时间模式释放几包神经递质分子。 2.由神经末梢激活引起的EPC的幅度分布显示出数量级。 EPC达到峰值的时间在大多数情况下与振幅无关,但是在衰减阶段,半衰期与振幅之间存在正相关。与模型的比较表明:(i)在EPC末端,由单个量子激活的突触后膜区域之间发生了动态相互作用,并且(ii)电器官中的量子释放位点彼此分开了600 -1000纳米3.使用相同类型的松散贴片电极从外部记录自发的微型斑块电势(MEPP)。大多数外部MEPP(75%)显示出均匀且快速的时间过程。该快速MEPP群体的平均峰值时间为0.43 ms,半衰变时间为0.45 ms,衰减的时间常数为0.35 ms。 4.尽管时间过程具有均一的特征,但快速MEPP仍显示出较宽的振幅分布,其主要种群可被1 mV附近的高斯曲线拟合,而另一个种群的振幅较小。快速MEPP的到达峰时间和半衰落时间均与最小事件到最大事件的振幅呈正相关。乙酰胆碱酯酶未被阻断。 5.除了快速的MEPP以外,还观察到自发信号显示出缓慢的上升速率或缓慢的衰减速率,或两者同时出现。它们在实验期间的任何时间发生,与总频率无关。事件总数中约有15%的上升缓慢,但衰减阶段仍然很快,可以归因于受体的动力学。这些缓慢上升的MEPP表现出多种形态:缓慢但平稳的上升,坡度的突然变化,有时还出现一些颠簸或弯曲。它们的平均幅度明显小于快速MEPP的主要人群。 6.即使在低频期间,也经常遇到具有多个峰值以及小的MEPP突发的复合MEPP。(摘要截断为400字)

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