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A network of networks model to study phase synchronization using structural connection matrix of human brain

机译:人脑结构连接矩阵研究相位同步的网络模型网络

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摘要

The cerebral cortex plays a key role in complex cortical functions. It can be divided into areas according to their function (motor, sensory and association areas). In this paper, the cerebral cortex is described as a network of networks (cortex network), we consider that each cortical area is composed of a network with small-world property (cortical network). The neurons are assumed to have bursting properties with the dynamics described by the Rulkov model. We study the phase synchronization of the cortex network and the cortical networks. In our simulations, we verify that synchronization in cortex network is not homogeneous. Besides, we focus on the suppression of neural phase synchronization. Synchronization can be related to undesired and pathological abnormal rhythms in the brain. For this reason, we consider the delayed feedback control to suppress the synchronization. We show that delayed feedback control is efficient to suppress synchronous behavior in our network model when an appropriate signal intensity and time delay are defined. (C) 2017 Elsevier B.V. All rights reserved.
机译:大脑皮层在复杂的皮质功能中起着关键作用。它可以根据其功能(电动机,感官和关联区域)分为区域。在本文中,脑皮层被描述为网络网络(Cortex网络),我们认为每个皮质区域由具有小世界(皮质网络)的网络组成。假设神经元具有与Rulkov模型描述的动态的突发性质。我们研究了Cortex网络和皮质网络的相位同步。在我们的模拟中,我们验证了Cortex网络中的同步不是均匀的。此外,我们专注于抑制神经相同步。同步可以与大脑中的不期望和病理异常节律有关。因此,我们考虑延迟反馈控制来抑制同步。我们表明,当定义适当的信号强度和时间延迟时,延迟反馈控制是抑制我们网络模型中的同步行为的有效。 (c)2017年Elsevier B.V.保留所有权利。

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