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强直后增强的幅度和衰减速率受不同机制控制。

Amplitude and rate of decay of post-tetanic potentiation are controlled by different mechanisms.

作者信息

Woodson P B, Schlapfer W T, Barondes S H

出版信息

Brain Res. 1978 Nov 17;157(1):33-46. doi: 10.1016/0006-8993(78)90994-0.

Abstract

Evidence is presented that post-tetanic potentiation (PTP) of the cholinergic, fast, Cl- dependent IPSP seen in cell L5 of the abdominal ganglion of Aplysia californica upon eliciting a spoke in cell L10 is due to an increase in spike-evoked transmitter release. The magnitude of the post-tetanic change in spike-evoked release is inversely correlated with the amount of transmitter released by an isolated presynaptic spike. This was found whether the latter was increased by injection of tetraethyl ammonium (TEA) into the soma of L10 or decreased by hyperpolarization of the soma of L10. Neither of these manipulations affected the rate of decay of PTP. The magnitude of PTP was increased and the rate of decay reduced by increasing either the number or frequency of stimuli in the tetanus. Under all conditions PTP decayed with a single exponential time course, asymptotically approaching the unpotentiated magnitude. It is concluded that while both the amplitude and rate of decay of PTP are affected by the frequency and number of stimuli in the tetanus, the underlying mechanism controlling the amplitude of PTP is different from the mechanism controlling the rate of decay of PTP.

摘要

有证据表明,在加州海兔腹神经节的L5细胞中,当在L10细胞中引发一个峰电位时所观察到的胆碱能、快速、Cl-依赖性抑制性突触后电位(IPSP)的强直后增强(PTP),是由于峰电位诱发的递质释放增加所致。强直后峰电位诱发释放的变化幅度与单个突触前峰电位释放的递质量呈负相关。无论是通过向L10细胞体注射四乙铵(TEA)来增加后者,还是通过使L10细胞体超极化来降低后者,均发现如此。这两种操作均不影响PTP的衰减速率。通过增加强直刺激中的刺激次数或频率,PTP的幅度增加而衰减速率降低。在所有条件下,PTP均以单一指数时间进程衰减,渐近地接近未增强的幅度。得出的结论是,虽然PTP的幅度和衰减速率均受强直刺激中的刺激频率和次数影响,但控制PTP幅度的潜在机制与控制PTP衰减速率的机制不同。

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