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大鼠海马锥体神经元中对突触前串刺激的谷氨酸能突触反应变异性的表征

Characterization of the variability of glutamatergic synaptic responses to presynaptic trains in rat hippocampal pyramidal neurons.

作者信息

Canepari M, Treves A

机构信息

Istituto Nazionale Fisica della Materia, International School for Advanced Studies, Trieste, Italy.

出版信息

Network. 2001 May;12(2):175-98.

Abstract

Excitatory postsynaptic currents from CA3 hippocampal neurons, elicited by trains of presynaptic action potentials either in mossy fibres or associative commissural fibres, have been analysed, by using a quantal analysis approach, in order to characterize their variability and the correlation among successive responses. As quantal parameters may change during the train according to the previous release events, correlation within consecutive EPSCs is expected. We tested simple hypotheses on how quantal parameters p and N may change on the basis of correlation detection in EPSCs. The statistical significance of these tests has been evaluated. The tests showed that, although simple binomial distributions can give a good description of synaptic responses at the level of single spikes, only stochastic chains can always account for correlations observed within the train. A systematic model fitting procedure has been developed and applied to extract information on the dynamics of synaptic transmission. As an application of this novel type of analysis, a measure of transmitted information to be associated with synaptic variability, a quantity that allows an estimate of the capability of the synapse to transmit reliable information in time, is proposed. We showed that this transmitted information depends on short-term plasticity and that the change in the type of short-term plasticity from facilitating to depressing obtained by increasing the extracellular calcium concentration results in a change of the related transmitted information.

摘要

利用量子分析方法,对海马体CA3神经元的兴奋性突触后电流进行了分析。这些电流由苔藓纤维或联合连合纤维中的一连串突触前动作电位引发,目的是表征其变异性以及连续反应之间的相关性。由于量子参数可能会根据之前的释放事件在一连串刺激过程中发生变化,因此预计连续的兴奋性突触后电流(EPSC)之间存在相关性。我们基于EPSC中的相关性检测,对量子参数p和N可能如何变化进行了简单假设检验,并评估了这些检验的统计学意义。检验结果表明,虽然简单的二项分布能够很好地描述单个脉冲水平上的突触反应,但只有随机链能够始终解释一连串刺激中观察到的相关性。我们开发了一种系统的模型拟合程序,并将其应用于提取突触传递动力学的信息。作为这种新型分析的一个应用,我们提出了一种与突触变异性相关的传递信息度量,该度量能够估计突触及时传递可靠信息的能力。我们发现,这种传递信息取决于短期可塑性,并且通过增加细胞外钙浓度使短期可塑性类型从易化转变为抑制,会导致相关传递信息的变化。

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