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快速发放中间神经元的信号处理特性。

Signal processing properties of fast spiking interneurons.

作者信息

Di Garbo Angelo, Barbi Michele, Chillemi Santi

机构信息

Istituto di Biofisica CNR, Sezione di Pisa, Via G Moruzzi 1, Pisa, Italy.

出版信息

Biosystems. 2006 Oct-Dec;86(1-3):27-37. doi: 10.1016/j.biosystems.2006.03.009. Epub 2006 Apr 7.

Abstract

Fast spiking interneurons receive excitatory synaptic inputs from pyramidal cells and a relevant problem is to understand how these cells readout this information. Here this topic is investigated theoretically by using a biophysical modeling of a pair of coupled fast spiking interneuron models. The model predicts, in agreement with the experimental findings, that these cells are capable of transmitting pre-synaptic signals with high temporal precision and transferring high frequency inputs while preserving their relative timing. Moreover, it is shown that a pair of fast spiking interneurons, coupled through both inhibitory and electrical synapses, behaves as a coincidence detector. Lastly, to understand the mechanisms underlying these phenomena, a theoretical analysis is carried out by using a simpler modeling approach.

摘要

快速放电中间神经元从锥体细胞接收兴奋性突触输入,一个相关问题是了解这些细胞如何解读此信息。在此,通过对一对耦合的快速放电中间神经元模型进行生物物理建模,从理论上研究了该主题。与实验结果一致,该模型预测这些细胞能够以高时间精度传递突触前信号,并在保持相对时间的同时传递高频输入。此外,研究表明,通过抑制性和电突触耦合的一对快速放电中间神经元表现为一个符合探测器。最后,为了理解这些现象背后的机制,使用一种更简单的建模方法进行了理论分析。

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