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On the synchrony of steady state visual evoked potentials and oscillatory burst events

机译:关于稳态视觉诱发电位和振荡爆发事件的同步

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In this paper, we investigate the large-scale synchrony of EEG oscillatory bursts, during stimulation by a flickering square of light. Whereas most studies focus on averaged raw EEG responses, this study considers oscillatory events within EEG of single trials, which leads to various new insights. We recorded EEG signals before, during and after stimulation by a flickering square of light in medium (16 Hz) and high frequency (32 Hz) ranges. Similar oscillatory bursts, to those observed in spontaneous EEG, can be found in single-trial synchrony of steady state visual evoked potentials (SSVEP). These bursts are extracted from the EEG of single trials using bump modeling. Stochastic event synchrony method is applied to those events, which quantifies synchronies of oscillatory bursts on a large-scale basis. Those oscillatory patterns have a significantly higher degree of co-occurrence during SSVEP, uncorrelated with ongoing signal synchrony. It means that EEG oscillatory patterns are presumably an outcome of brain activity, rather than a mere side effect of ongoing EEG. They undergo a consistent reorganization during visual stimulation, preferentially along the visual pathway, depending on magno or parvo stimulations. Flickering stimuli may induce some cognitive side-effects depending on the stimulation frequency.
机译:在本文中,我们研究了闪烁的正方形光在刺激期间脑电信号振荡爆发的大规模同步性。尽管大多数研究集中在平均原始EEG反应上,但本研究考虑了单个试验的EEG内的振荡事件,这导致了各种新见解。我们在中频(16 Hz)和高频(32 Hz)范围内通过闪烁的正方形光记录刺激之前,期间和之后的EEG信号。在自发稳态视觉诱发电位(SSVEP)的单次试验同步中,可以发现与自发EEG中观察到的相似的振动爆发。这些爆发是使用凹凸模型从单次试验的EEG中提取的。随机事件同步方法应用于这些事件,可以大规模量化振荡突发的同步。在SSVEP期间,这些振荡模式具有较高的共现度,与正在进行的信号同步无关。这意味着脑电图的振荡模式可能是大脑活动的结果,而不仅仅是持续进行的脑电图的副作用。它们在视觉刺激过程中会经历一致的重组,具体取决于视觉刺激或细小刺激。闪烁的刺激可能会引起一些认知副作用,具体取决于刺激的频率。

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