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影响积分发放振荡器相位同步的因素。

Factors affecting phase synchronization in integrate-and-fire oscillators.

作者信息

Troyer Todd W

机构信息

Department of Psychology, University of Maryland, College Park, MD 20742, USA.

出版信息

J Comput Neurosci. 2006 Apr;20(2):191-200. doi: 10.1007/s10827-006-6174-6. Epub 2006 Apr 22.

Abstract

Step changes in input current are known to induce partial phase synchrony in ensembles of leaky integrate-and-fire neurons operating in the oscillatory or "regular firing" regime. An analysis of this phenomenon in the absence of noise is presented based on the probability flux within an ensemble of generalized integrate-and-fire neurons. It is shown that the induction of phase synchrony by a step input can be determined by calculating the ratio of the voltage densities obtained from fully desynchronized ensembles firing at the pre and post-step firing rates. In the limit of low noise and in the absence of phase synchrony, the probability density as a function of voltage is inversely proportional to the time derivative along the voltage trajectory. It follows that the magnitude of phase synchronization depends on the degree to which a change in input leads to a uniform multiplication of the voltage derivative over the range from reset to spike threshold. This analysis is used to investigate several factors affecting phase synchronization including high firing rates, inputs modeled as conductances rather than currents, peri-threshold sodium currents, and spike-triggered potassium currents. Finally, we show that without noise, the equilibrium ensemble density is proportional to the phase response curve commonly used to analyze oscillatory systems.

摘要

已知输入电流的阶跃变化会在处于振荡或“规则放电”状态的漏电积分发放神经元群体中诱导部分相位同步。基于广义积分发放神经元群体内的概率通量,对无噪声情况下的这一现象进行了分析。结果表明,阶跃输入对相位同步的诱导可通过计算在阶跃前和阶跃后发放率下完全不同步群体发放所获得的电压密度之比来确定。在低噪声极限且无相位同步的情况下,作为电压函数的概率密度与沿电压轨迹的时间导数成反比。由此可知,相位同步的幅度取决于输入变化导致电压导数在从重置到峰值阈值范围内均匀倍增的程度。该分析用于研究影响相位同步的几个因素,包括高发放率、建模为电导而非电流的输入、阈下钠电流和峰触发钾电流。最后,我们表明在无噪声情况下,平衡群体密度与通常用于分析振荡系统的相位响应曲线成正比。

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