首页> 美国卫生研究院文献>The Journal of Physiology >Frequency-dependent shift from paired-pulse facilitation to paired-pulse depression at unitary CA3–CA3 synapses in the rat hippocampus
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Frequency-dependent shift from paired-pulse facilitation to paired-pulse depression at unitary CA3–CA3 synapses in the rat hippocampus

机译:大鼠海马CA3–CA3突触中频率从成对促进向成对抑制的转变

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摘要

Paired recordings between CA3 interconnected pyramidal neurons were used to study the properties of short-term depression occurring in these synapses under different frequencies of presynaptic firing (n = 22). In stationary conditions (0.05–0.067 Hz) pairs of presynaptic action potentials (50 ms apart) evoked EPSCs whose amplitude fluctuated from trial to trial with occasional response failures. In 15/20 cells, paired-pulse ratio (PPR) was characterized by facilitation (PPF) while in the remaining five by depression (PPD). Increasing stimulation frequency from 0.05–0.067 Hz to 0.1–1 Hz induced low frequency depression (LFD) of EPSC amplitude with a gradual increase in the failure rate. Overall, 9/12 cells at 1 Hz became almost ‘silent’. In six cells in which the firing rate was sequentially shifted from 0.05 to 0.1 and 1 Hz, changes in synaptic efficacy were so strong that PPR shifted from PPF to PPD. The time course of depression of EPSC1 could be fitted with single exponentials with time constants of 98 and 36 s at 0.1 and 1 Hz, respectively. In line with the inversion of PPR at 1 Hz, the time course of depression of EPSC2 was faster than EPSC1 (7 s). Recovery from depression could be obtained by lowering the frequency of stimulation to 0.025 Hz. These results could be explained by a model that takes into account two distinct release processes, one dependent on the residual calcium and the other on the size of the readily releasable pool of vesicles.
机译:使用CA3相互连接的锥体神经元之间的配对记录来研究在不同突触前激发频率(n = 22)下这些突触中发生的短期抑制的特性。在静止状态(0.05–0.067 Hz)下,突触前动作电位对(相距50 ms)诱发了EPSC,其振幅在试验之间因试验响应而波动。在15/20个细胞中,成对脉冲比率(PPR)以促进(PPF)为特征,而其余五个通过抑郁(PPD)表征。将刺激频率从0.05–0.067 Hz增加到0.1–1 Hz会导致EPSC振幅的低频抑制(LFD),并且失效率逐渐增加。总体而言,在1 Hz的9/12电池几乎变成“沉默”。在六个发射速率依次从0.05变为0.1和1 Hz的细胞中,突触效力的变化是如此之强,以至于PPR从PPF变为PPD。 EPSC1下降的时间过程可以用单指数拟合,其时间常数分别为0.1和1 Hz时为98和36 s。与PPR在1 Hz处的倒转相一致,EPSC2下降的时间过程比EPSC1快(7 s)。通过将刺激频率降低到0.025 Hz,可以从抑郁中恢复。这些结果可以用考虑了两种不同释放过程的模型来解释,一种取决于残留的钙,另一种取决于易于释放的囊泡的大小。

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