基于高斯解耦的随机 FHN 系统的确定性分析

IF 4.4 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
Lianghui Qu , Lin Du , Honghui Zhang , Zilu Cao , Zichen Deng
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引用次数: 0

摘要

本文从统计意义上系统地探讨了菲茨休-纳古莫(FitzHugh-Nagumo,FHN)系统对突触噪声响应的确定性特征。借助高斯解耦近似,通过忽略二阶以上的累积量,建立了 FHN 系统对突触噪声响应的两个替代系统,并通过误差分析证明了使用替代系统进行响应分析的可行性。然后,通过两个替代系统对具有突触噪声的 FHN 系统进行了确定性分析。数值结果表明,无论是神经元系统还是网络系统,突触噪声都能有效调节其动力学,并诱导放电活动的模式转换。基于 FHN 神经元的二级兴奋性,系统活动与噪声参数和其他相关变量存在非线性依赖关系。特别是,突触噪声不仅通过与输入信号竞争使神经元系统从低电平窄幅振荡过渡到高电平窄幅振荡,还有助于该系统对微弱输入信号的响应或检测。本研究揭示了带有突触噪声的 FHN 系统的确定性特征,可为大规模分析提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deterministic analysis of stochastic FHN systems based on Gaussian decoupling
This paper systematically explores the deterministic characteristics of FitzHugh-Nagumo (FHN) systems’ response to synaptic noise in statistical sense. With the help of Gauss decoupling approximation, two substitute systems of FHN systems’ response to synaptic noise are established by ignoring the cumulants higher than the second order, and the feasibilities of using the substitute systems for response analysis are demonstrated through error analysis. Then, the deterministic analyses of FHN systems with synaptic noise are carried out by means of the two substitute systems. Numerical results show that whether it is the neuronal system or the network system, the synaptic noise can effectively regulate its dynamics, and induce the mode transitions of discharge activity. Based on the class II excitability of FHN neurons, the system activity has a nonlinear dependence on the noise parameter and the other variables of interest. Particularly, the synaptic noise not only makes the neuronal system transition from low-level to high-level narrow-amplitude oscillation by competing with the input signal, but also contributes to the response or detection of this system to weak input signals. This study reveals the deterministic characteristics of FHN systems with synaptic noise, which can provide a reference for the large-scale analysis.
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来源期刊
Applied Mathematical Modelling
Applied Mathematical Modelling 数学-工程:综合
CiteScore
9.80
自引率
8.00%
发文量
508
审稿时长
43 days
期刊介绍: Applied Mathematical Modelling focuses on research related to the mathematical modelling of engineering and environmental processes, manufacturing, and industrial systems. A significant emerging area of research activity involves multiphysics processes, and contributions in this area are particularly encouraged. This influential publication covers a wide spectrum of subjects including heat transfer, fluid mechanics, CFD, and transport phenomena; solid mechanics and mechanics of metals; electromagnets and MHD; reliability modelling and system optimization; finite volume, finite element, and boundary element procedures; modelling of inventory, industrial, manufacturing and logistics systems for viable decision making; civil engineering systems and structures; mineral and energy resources; relevant software engineering issues associated with CAD and CAE; and materials and metallurgical engineering. Applied Mathematical Modelling is primarily interested in papers developing increased insights into real-world problems through novel mathematical modelling, novel applications or a combination of these. Papers employing existing numerical techniques must demonstrate sufficient novelty in the solution of practical problems. Papers on fuzzy logic in decision-making or purely financial mathematics are normally not considered. Research on fractional differential equations, bifurcation, and numerical methods needs to include practical examples. Population dynamics must solve realistic scenarios. Papers in the area of logistics and business modelling should demonstrate meaningful managerial insight. Submissions with no real-world application will not be considered.
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