论文标题

复杂网络上的fitzhugh-nagumo振荡器模仿癫痫与西兹相关的同步现象

FitzHugh-Nagumo oscillators on complex networks mimic epileptic-seizure-related synchronization phenomena

论文作者

Gerster, M., Berner, R., Sawicki, J., Zakharova, A., Škoch, A., Hlinka, J., Lehnertz, K., Schöll, E.

论文摘要

我们研究了在人类受试者中测得的经验结构连通性的Fitzhugh-Nagumo振荡器网络中部分同步的模式。我们报告了同步现象的自发发生,这些现象与人类癫痫发作期间看到的同步现象非常相似。为了更深入地了解动态和网络拓扑之间的相互作用,我们对不同范式网络结构进行振荡动力学进行了长期模拟:随机网络,常规的非局限性耦合环网络,具有分形连接性的环网网络以及带有各种重新启动可能性的小世界网络。在这些网络中,具有中间重新布线概率的小世界网络最佳模仿使用经验结构连接的模拟所获得的发现。对于其他网络拓扑,可以在模拟动力学中观察到与自发发生的癫痫性与同步现象,或者在整个模拟过程中同步的整体程度保持较高。这表明,规律性和随机性之间具有一定平衡的拓扑有利于癫痫发作的强烈同步发作的自我启动和自我终止。

We study patterns of partial synchronization in a network of FitzHugh-Nagumo oscillators with empirical structural connectivity measured in human subjects. We report the spontaneous occurrence of synchronization phenomena that closely resemble the ones seen during epileptic seizures in humans. In order to obtain deeper insights into the interplay between dynamics and network topology, we perform long-term simulations of oscillatory dynamics on different paradigmatic network structures: random networks, regular nonlocally coupled ring networks, ring networks with fractal connectivities, and small-world networks with various rewiring probability. Among these networks, a small-world network with intermediate rewiring probability best mimics the findings achieved with the simulations using the empirical structural connectivity. For the other network topologies, either no spontaneously occurring epileptic-seizure-related synchronization phenomena can be observed in the simulated dynamics, or the overall degree of synchronization remains high throughout the simulation. This indicates that a topology with some balance between regularity and randomness favors the self-initiation and self-termination of episodes of seizure-like strong synchronization.

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