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Effects of network topology transmission delays and refractoriness on the response of coupled excitable systems to a stochastic stimulus

机译:网络拓扑传输延迟和耐火度对耦合的可激发系统对随机刺激的响应的影响

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摘要

We study the effects of network topology on the response of networks of coupled discrete excitable systems to an external stochastic stimulus. We extend recent results that characterize the response in terms of spectral properties of the adjacency matrix by allowing distributions in the transmission delays and in the number of refractory states and by developing a nonperturbative approximation to the steady state network response. We confirm our theoretical results with numerical simulations. We find that the steady state response amplitude is inversely proportional to the duration of refractoriness, which reduces the maximum attainable dynamic range. We also find that transmission delays alter the time required to reach steady state. Importantly, neither delays nor refractoriness impact the general prediction that criticality and maximum dynamic range occur when the largest eigenvalue of the adjacency matrix is unity.
机译:我们研究了网络拓扑结构对耦合离散激励系统网络对外部随机刺激的响应的影响。我们扩展了最近的结果,该结果通过允许传输延迟和难熔状态数的分布以及开发出对稳态网络响应的非扰动近似,从而根据邻接矩阵的频谱特性来表征响应。我们用数值模拟证实了我们的理论结果。我们发现稳态响应幅度与耐火度的持续时间成反比,从而降低了最大可达到的动态范围。我们还发现传输延迟会更改达到稳定状态所需的时间。重要的是,当邻接矩阵的最大特征值是1时,延迟和耐火度都不会影响临界和最大动态范围的一般预测。

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