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Periodic Visual Stimulation Induces Resting-State Brain Network Reconfiguration

机译:周期性的视觉刺激引起静息状态的大脑网络重构

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摘要

Periodic visual stimulation can evoke the steady-state visual potential (SSVEP) in the brain. Owing to its superior characteristics, the SSVEP has been widely used in neural engineering and cognitive neuroscience studies. However, the underlying mechanisms of the SSVEP are not well understood. In this study, we introduced a brain reconfiguration methodology to explore the possible mechanisms of the SSVEP. The EEG data from five periodic stimuli consistently indicated that the periodic visual stimulation could induce resting-state brain network reconfiguration and that the responses evoked by the stimuli were correlated to the network reconfiguration indexes. For each stimulus frequency, larger response amplitudes corresponded to higher reconfiguration indexes from the resting-state network to a stimulus-evoked network. These findings demonstrate that an external periodic visual stimulation can induce the modification of intrinsic oscillatory activities by reconfiguring resting-state activity at a network level, which could facilitate the responses evoked by the stimulus. These findings provide new insights into the response mechanisms of periodic visual stimulation.
机译:周期性的视觉刺激可以唤起大脑中的稳态视觉潜能(SSVEP)。由于其优越的特性,SSVEP已广泛用于神经工程和认知神经科学研究。但是,SSVEP的基本机制还不是很清楚。在这项研究中,我们介绍了一种大脑重构方法,以探索SSVEP的可能机制。来自五个周期性刺激的EEG数据一致地表明,周期性视觉刺激可诱发静息状态的大脑网络重构,并且刺激引起的反应与网络重构指标相关。对于每个刺激频率,较大的响应幅度对应于从静止状态网络到刺激诱发网络的较高重新配置索引。这些发现表明,外部周期性视觉刺激可以通过在网络水平上重新配置静止状态活动来诱导固有振荡活动的改变,这可以促进刺激引起的反应。这些发现为周期性视觉刺激的反应机制提供了新的见解。

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