Nonlinear brain dynamics in neural field model and harmonic generation responses to the external stimuli

Q4 Physics and Astronomy Iranian Journal of Physics Research Pub Date : 2023-06-01 DOI:10.47176/ijpr.23.1.11595
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Abstract

The most important nonlinear feature in the EEG response to external stimuli is the harmonic generation and entrainment which is due to the interaction between stimuli and ongoing brain oscillations. In this paper, we study the nonlinear brain dynamics and harmonic generation responses to the periodic external stimuli by employing continuum neural field model. A compact dynamical model of brain activity is first introduced, and the governing equations for the evolution of potential are obtained. Then, using the perturbation method and multiple time scales, we show brain response oscillations in harmonic drive frequency consistent with the recorded scalp EEGs from awake human subjects. Finally, to confirm the experimentally observed results of interaction between photic driving and brain dynamics, we have numerically simulated the full neural field model equations, and have shown harmonic frequency generation over a range of external frequencies.
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神经场模型中的非线性脑动力学及对外界刺激的谐波产生反应
在脑电对外部刺激的响应中,最重要的非线性特征是谐波的产生和携带,这是由于刺激和持续的脑振荡之间的相互作用。本文采用连续神经场模型研究了周期性外部刺激下的非线性脑动力学和谐波产生响应。首先介绍了一个紧凑的脑活动动力学模型,得到了脑电位演化的控制方程。然后,采用摄动法和多时间尺度,我们显示了与清醒受试者记录的头皮脑电图一致的谐波驱动频率下的大脑反应振荡。最后,为了证实光驱动与脑动力学之间相互作用的实验观察结果,我们对全神经场模型方程进行了数值模拟,并展示了在一定频率范围内谐波频率的产生。
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来源期刊
Iranian Journal of Physics Research
Iranian Journal of Physics Research Physics and Astronomy-Physics and Astronomy (all)
CiteScore
0.20
自引率
0.00%
发文量
0
审稿时长
30 weeks
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