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周期性电刺激下皮质网络中的频率依赖性反应。

Frequency-dependent response in cortical network with periodic electrical stimulation.

作者信息

Wang Jixuan, Deng Bin, Gao Tianshi, Wang Jiang, Yi Guosheng, Wang Ruofan

机构信息

School of Electrical and Information Engineering, Tianjin University, 300072 Tianjin, China.

School of Information Technology Engineering, Tianjin University of Technology and Education, 300222 Tianjin, China.

出版信息

Chaos. 2020 Jul;30(7):073130. doi: 10.1063/5.0007006.

Abstract

Electrical stimulation can shape oscillations in brain activity. However, the mechanism of how periodic electrical stimulation modulates brain oscillations by time-delayed neural networks is poorly understood at present. To address this question, we investigate the effects of periodic stimulations on the oscillations generated via a time-delayed neural network. We specifically study the effect of unipolar and asymmetric bidirectional pulse stimulations by altering amplitude and frequency in a systematic manner. Our findings suggest that electrical stimulations play a central role in altering oscillations in the time-delayed neural network and that these alterations are strongly dependent on the stimulus frequency. We observe that the time-delayed neural network responds differently as the stimulation frequency is altered, as manifested by changes in resonance, entrainment, non-linear oscillation, or oscillation suppression. The results also indicate that the network presents similar response activities with increasing stimulus frequency under different excitation-inhibition ratios. Collectively, our findings pave the way for exploring the potential mechanism underlying the frequency-dependent modulation of network activity via electrical stimulations and provide new insights into possible electrical stimulation therapies to the neurological and psychological disorders in clinical practice.

摘要

电刺激能够塑造大脑活动中的振荡。然而,目前对于周期性电刺激如何通过时延神经网络调节大脑振荡的机制仍知之甚少。为解决这一问题,我们研究了周期性刺激对通过时延神经网络产生的振荡的影响。我们特别通过系统地改变幅度和频率,研究了单极和不对称双向脉冲刺激的效果。我们的研究结果表明,电刺激在改变时延神经网络中的振荡方面起着核心作用,并且这些改变强烈依赖于刺激频率。我们观察到,当时延神经网络的刺激频率改变时,其反应会有所不同,表现为共振、同步、非线性振荡或振荡抑制的变化。结果还表明,在不同的兴奋-抑制比率下,随着刺激频率的增加,网络呈现出相似的反应活动。总体而言,我们的研究结果为探索通过电刺激进行网络活动频率依赖性调制的潜在机制铺平了道路,并为临床实践中可能的电刺激治疗神经和心理疾病提供了新的见解。

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