首页> 美国卫生研究院文献>The Journal of Physiology >Non-quantal fluctuations and transmission failures in charge transfer at Ia synapses on spinal motoneurones.
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Non-quantal fluctuations and transmission failures in charge transfer at Ia synapses on spinal motoneurones.

机译:脊髓运动神经元在Ia突触中电荷转移的非量子波动和传输失败。

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摘要

1. The origins of fluctuations in charge transfer during the generation of Ia e.p.s.p.s have been investigated. The discrete components which make up the fluctuating e.p.s.p. have been separated. 2. Some e.p.s.p.s fluctuate between two different amplitudes and time courses. These fluctuations have been analysed to show that charge transmission always occurs at one synaptic location, but not always at a second synaptic location. 3. The failures in transmission were study by stimulating the afferent fibre at different frequencies. Although different probabilities of failure were obtained at different frequencies, there was no systematic change in probability with increasing frequency. 4. Single afferents were tetanized and histograms of charge transfer computed during post-tetanic potentiation (p.t.p.). Only half of the units studied showed any p.t.p. In those that did, evidence was found for a decrease in the probability of failure during potentiation. 5. The results could not be used to distinguish between failure of the impulse to always propagate into the terminals, and failure of the terminals to release transmitter following adequate depolarization. 6. The fluctuations in transmission at a single synapse can be described by a binomial process with n = 1 and p less than or equal to 1. Junctional mechanisms consistent with this description are discussed. Alternative mechanisms which associate failures with failure of impulse transmission at afferent fibre branch points are also suggested.
机译:1.研究了Ia e.p.s.p.s产生过程中电荷转移波动的起因。组成波动e.p.s.p.已经分开了。 2.一些e.p.s.p.s在两个不同的幅度和时程之间波动。分析了这些波动,以表明电荷传输始终发生在一个突触位置,而不总是发生在第二个突触位置。 3.通过刺激不同频率的传入光纤来研究传输失败。尽管在不同的频率下获得了不同的故障概率,但是随着频率的增加,概率没有系统的变化。 4.单次传入进行tetanized,并在强直后增强期间计算电荷转移的直方图(p.t.p.)。研究的单位中只有一半显示出p.t.p.在那些做的那些中,发现了在增强期间失败的可能性降低的证据。 5.结果不能用来区分始终传播到终端的脉冲失败和在充分去极化后终端无法释放发射机的失败。 6.单个突触传递的波动可以通过二项式过程描述,其中n = 1,p小于或等于1。讨论了与该描述一致的连接机制。还提出了将故障与传入光纤分支点处的脉冲传输故障相关联的替代机制。

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