Department of Biomedical Physics, Institute of Experimental Physics, University of Warsaw, Warsaw, Poland.
Faculty of Psychology, University of Warsaw, Warsaw, Poland.
Int J Neurosci. 2023 Mar;133(3):238-247. doi: 10.1080/00207454.2021.1909010. Epub 2021 Sep 24.
The electrophysiological correlates of meditation states in both short and long-term meditators have been increasingly documented; however, little is known about the brain activity associated with first-time meditation experiences. The goal of this study was to investigate the electrophysiological correlates of a single guided mindfulness meditation session in subjects with no previous meditation experience.
We analyzed electroencephalogram (EEG) changes in signal power, hemispheric asymmetry, and information flow between EEG channels, in 16 healthy subjects who were new to meditation practice.
Our results show that information flow decreases in the theta (4-8 Hz) and alpha ranges (8-13 Hz) during mindfulness meditation exercise as compared to control: a passive listening condition. These changes are accompanied by a general trend in the decrease of alpha power over the whole scalp. One possible interpretation of these results is that there is an increased level of alertness/vigilance associated with the meditation task rather than reaching the target state.
Our study expands on the existing body of knowledge concerning neural oscillations during breathing meditation practice by showing that in participants with no previous meditation training, EEG correlates are different from the electrophysiological signatures of mindfulness meditation found in studies of more advanced practitioners.
越来越多的研究记录了短期和长期冥想者的冥想状态的电生理相关性;然而,对于与首次冥想体验相关的大脑活动知之甚少。本研究的目的是调查首次进行引导式正念冥想的健康被试的脑电活动。
我们分析了 16 名初次进行冥想练习的健康被试的脑电图(EEG)信号功率、半球不对称性和脑电图通道之间的信息流变化。
我们的结果表明,与对照组(被动聆听条件)相比,正念冥想练习期间θ(4-8 Hz)和α频段(8-13 Hz)的信息流减少。这些变化伴随着整个头皮上α 功率普遍下降的趋势。这些结果的一种可能解释是,与冥想任务相关的警觉/警觉水平增加,而不是达到目标状态。
我们的研究通过显示在没有以前冥想训练的参与者中,脑电图相关性与更高级别冥想者研究中发现的正念冥想的电生理特征不同,扩展了关于呼吸冥想练习期间神经振荡的现有知识体系。