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长时程增强与量子含量和量子幅度的增加有关。

Long-term potentiation is associated with increases in quantal content and quantal amplitude.

作者信息

Kullmann D M, Nicoll R A

机构信息

Department of Pharmacology, School of Medicine, University of California, San Francisco 94143-0450.

出版信息

Nature. 1992 May 21;357(6375):240-4. doi: 10.1038/357240a0.

Abstract

Long-term potentiation (LTP) of synaptic transmission in CA1 neurons of the hippocampus, elicited by the conjunction of presynaptic firing and postsynaptic depolarization, is an important model of plasticity, which may underlie memory storage. Although induction of LTP takes place in the postsynaptic cell, it is not clear whether it is expressed through an enhancement of transmitter release or through an increased postsynaptic response to the same amount of transmitter. Analysis of the trial-to-trial amplitude fluctuations of synaptic signals, that is quantal analysis, gives an important insight into the probabilistic mechanisms of transmission, although attempts to apply it to the mode of expression of LTP have so far yielded inconsistent results, at least in part because they have relied on models of transmitter release that have not been confirmed experimentally. Here we report clear evidence for quantal fluctuation in a subset of cells. Induction of LTP in these cells causes abrupt increases in either quantal content or quantal amplitude, or both. This shows that two different mechanisms can underlie the maintenance of LTP.

摘要

海马体CA1神经元中,由突触前放电和突触后去极化共同引发的突触传递长时程增强(LTP)是一种重要的可塑性模型,可能是记忆存储的基础。虽然LTP的诱导发生在突触后细胞中,但尚不清楚它是通过增强递质释放来表达,还是通过对相同数量递质的突触后反应增加来表达。对突触信号逐次试验幅度波动的分析,即量子分析,能让我们深入了解传递的概率机制,尽管迄今为止将其应用于LTP表达模式的尝试产生了不一致的结果,至少部分原因是它们依赖于尚未经实验证实的递质释放模型。在这里,我们报告了在一部分细胞中存在量子波动的明确证据。这些细胞中LTP的诱导会导致量子含量或量子幅度,或两者突然增加。这表明LTP的维持可能有两种不同的机制。

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