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A Time-Variant Processing Approach for the Analysis of Alpha and Gamma MEG Oscillations During Flicker Stimulus Generated Entrainment

机译:一种时变处理方法,用于分析闪烁刺激产生的夹带过程中的α和γMEG振荡。

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摘要

Repetitive flicker stimulation (photic driving) offers the possibility to study the properties and coupling characteristics of stimulation-sensitive neuronal oscillators by means of the MEG/EEG analysis. With flicker frequencies in the region of the individual alpha band frequency, the dynamics of the entrainment process of the alpha oscillation, as well as the dynamics of the accompanying gamma oscillations and the coupling between the oscillations, are investigated by means of an appropriate combination of time-variant analysis methods. The Hilbert and the Gabor transformation reveal time-variant properties (frequency entrainment, phase locking, and n:m synchronization) of the entrainment process in the whole frequency range. Additionally, time-variant partial directed coherence is applied to identify ocular saccadic interferences and to study the directed information transfer between the recording sites of the simultaneously derived MEG/EEG data during the entrainment. The MEG data is the focus of this methodological study as the entrainment effects of the alpha oscillation are stronger in MEG than in the EEG. The occipital brain region (visual cortex) was mainly investigated and the dynamics of the alpha entrainment quantified. It can be shown that at the beginning of this entrainment, a transient, strongly phase-locked “40-Hz” gamma oscillation occurs.
机译:重复闪烁刺激(光驱动)为通过MEG / EEG分析研究刺激敏感神经元振荡器的特性和耦合特性提供了可能性。在单个α频带频率范围内的闪烁频率下,通过以下各项的适当组合,研究α振荡的夹带过程的动力学以及伴随的γ振荡的动力学和振荡之间的耦合。时变分析方法。 Hilbert和Gabor变换揭示了在整个频率范围内,整个过程的时变特性(频率夹带,锁相和n:m同步)。此外,时变部分有向相干性可用于识别眼部眼部干扰,并在夹带过程中研究同时导出的MEG / EEG数据的记录位置之间的有向信息传递。 MEG数据是该方法研究的重点,因为MEG中的α振荡的夹带效应比EEG中的强。主要研究枕脑区域(视觉皮层)并量化α夹带的动力学。可以看出,在这种夹带的开始,发生了一个短暂的,强烈锁相的“ 40Hz”伽马振荡。

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