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Physiologically motivated multiplex Kuramoto model describes phase diagram of cortical activity

机译:生理动机的多重仓本模型描述了皮层活动的相图

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We derive a two-layer multiplex Kuramoto model from Wilson-Cowan type physiological equations that describe neural activity on a network of interconnected cortical regions. This is mathematically possible due to the existence of a unique, stable limit cycle, weak coupling, and inhibitory synaptic time delays. We study the phase diagram of this model numerically as a function of the inter-regional connection strength that is related to cerebral blood flow, and a phase shift parameter that is associated with synaptic GABA concentrations. We find three macroscopic phases of cortical activity: background activity (unsynchronized oscillations), epileptiform activity (highly synchronized oscillations) and resting-state activity (synchronized clusters/chaotic behaviour). Previous network models could hitherto not explain the existence of all three phases. We further observe a shift of the average oscillation frequency towards lower values together with the appearance of coherent slow oscillations at the transition from resting-state to epileptiform activity. This observation is fully in line with experimental data and could explain the influence of GABAergic drugs both on gamma oscillations and epileptic states. Compared to previous models for gamma oscillations and resting-state activity, the multiplex Kuramoto model not only provides a unifying framework, but also has a direct connection to measurable physiological parameters.
机译:我们从Wilson-Cowan类型的生理方程式导出了两层多重Kuramoto模型,该模型描述了互连皮质区域网络上的神经活动。由于存在唯一,稳定的极限环,弱耦合和抑制性突触时间延迟,因此在数学上这是可能的。我们根据与大脑血流相关的区域间连接强度以及与突触GABA浓度相关的相移参数,以数值方式研究该模型的相图。我们发现皮层活动的三个宏观阶段:背景活动(非同步振荡),癫痫样活动(高度同步振荡)和静止状态活动(同步簇/混沌行为)。迄今为止的以前的网络模型可能无法解释所有三个阶段的存在。我们进一步观察到平均振荡频率向较低值的移动,以及从静止状态到癫痫样活动过渡时相干缓慢振荡的出现。这一观察结果与实验数据完全吻合,可以解释GABA能药物对伽马振荡和癫痫状态的影响。与以前的伽马振荡和静止状态活动模型相比,多重库拉莫特模型不仅提供了统一的框架,而且还与可测量的生理参数直接相关。

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