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Different synchronization characteristics of distinct types of traveling waves in a model of active medium with periodic boundary conditions

机译:具有周期边界条件的活性介质模型中不同类型行波的不同同步特性

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The model of a one-dimensional active medium, which cells are the FitzHugh-Nagumo oscillators, is studied for periodical boundary conditions. The medium possesses three different regimes in dependence on the parameter values. The regimes correspond to the self-sustained oscillations, excitable dynamics or bistability of the medium cells. Periodic boundary conditions provide the existence of traveling wave modes in all mentioned cases without any deterministic or stochastic excitation. The spatial waveforms and the character of oscillations in time can be similar in the different cases, but the properties of wave modes depend considerably on the medium regime. So, the dispersion characteristics and the synchronization phenomena are essentially different for bistable and excitable media on the one hand, and for the self-sustained oscillatory medium on the other hand. The local and distributed periodic influence on the medium are studied. The phenomenon of the traveling wave frequency locking is observed for all three regimes of the active medium. The comparison of synchronization effects in self-oscillatory, excitable and bistable regimes of the active medium is carried out. (c) 2016 Elsevier B.V. All rights reserved.
机译:研究周期性边界条件的一维活性介质模型,该模型的细胞为FitzHugh-Nagumo振荡器。根据参数值,介质具有三种不同的模式。该方案对应于中等细胞的自我维持的振动,兴奋性动力学或双稳态。在所有提到的情况下,周期性边界条件都提供了行波模式的存在,而没有任何确定性或随机激励。在不同情况下,空间波形和时间上的振荡特性可能相似,但是波模式的属性在很大程度上取决于介质状态。因此,一方面,对于双稳态和可激发的介质,另一方面对于自持振荡介质,其色散特性和同步现象本质上是不同的。研究了对介质的局部和周期性的影响。对于活性介质的所有三种情况,都观察到行波频率锁定现象。在活性介质的自振荡,可激发和双稳态方案中进行了同步效应的比较。 (c)2016 Elsevier B.V.保留所有权利。

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