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首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Control of synchronization and spiking regularity by heterog-enous aperiodic high-frequency signal in coupled excitable systems
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Control of synchronization and spiking regularity by heterog-enous aperiodic high-frequency signal in coupled excitable systems

机译:耦合励磁系统中异质非周期性高频信号对同步和尖峰规律的控制

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This paper investigates the synchronization and spiking regularity induced by heteroge-nous aperiodic (HA) signal in coupled excitable FitzHugh-Nagumo systems. We found new nontrivial effects of couplings and HA signals on the firing regularity and synchronization in coupled excitable systems without a periodic external driving. The phenomenon is similar to array enhanced coherence resonance (AECR), and it is shown that AECR-type behavior is not limited to systems driven by noises. It implies that the HA signal may be beneficial for the brain function, which is similar to the role of noise. Furthermore, it is also found that the mean frequencies, the amplitudes and the heterogeneity of HA stimuli can serve as control parameters in modulating spiking regularity and synchronization in coupled excitable systems. These results may be significant for the control of the synchronized firing of the brain in neural diseases like epilepsy.
机译:本文研究了在耦合的可激发FitzHugh-Nagumo系统中由异质非周期性(HA)信号引起的同步和峰值规律。我们发现了耦合和HA信号对耦合的可激励系统中的发射规律性和同步性的新的重要影响,而没有周期性的外部驱动。这种现象类似于阵列增强的相干共振(AECR),并且表明AECR类型的行为不限于由噪声驱动的系统。这意味着HA信号可能对大脑功能有益,这与噪音的作用相似。此外,还发现HA刺激的平均频率,幅度和异质性可作为控制参数,用于调制耦合的可激励系统中的尖峰规律和同步。这些结果对于控制诸如癫痫病之类的神经疾病的大脑同步放电可能具有重要意义。

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