Alpha and theta oscillations are inversely related to progressive levels of meditation depth.

IF 3.1 Q1 PSYCHOLOGY, BIOLOGICAL
Neuroscience of Consciousness Pub Date : 2021-11-29 eCollection Date: 2021-01-01 DOI:10.1093/nc/niab042
Sucharit Katyal, Philippe Goldin
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引用次数: 5

Abstract

Meditation training is proposed to enhance mental well-being by modulating neural activity, particularly alpha and theta brain oscillations, and autonomic activity. Although such enhancement also depends on the quality of meditation, little is known about how these neural and physiological changes relate to meditation quality. One model characterizes meditation quality as five increasing levels of 'depth': hindrances, relaxation, concentration, transpersonal qualities and nonduality. We investigated the neural oscillatory (theta, alpha, beta and gamma) and physiological (respiration rate, heart rate and heart rate variability) correlates of the self-reported meditation depth in long-term meditators (LTMs) and meditation-naïve controls (CTLs). To determine the neural and physiological correlates of meditation depth, we modelled the change in the slope of the relationship between self-reported experiential degree at each of the five depth levels and the multiple neural and physiological measures. CTLs reported experiencing more 'hindrances' than LTMs, while LTMs reported more 'transpersonal qualities' and 'nonduality' compared to CTLs, confirming the experiential manipulation of meditation depth. We found that in both groups, theta (4-6 Hz) and alpha (7-13 Hz) oscillations were related to meditation depth in a precisely opposite manner. The theta amplitude positively correlated with 'hindrances' and increasingly negatively correlated with increasing meditation depth levels. Alpha amplitude negatively correlated with 'hindrances' and increasingly positively with increasing depth levels. The increase in the inverse association between theta and meditation depth occurred over different scalp locations in the two groups-frontal midline in LTMs and frontal lateral in CTLs-possibly reflecting the downregulation of two different aspects of executive processing-monitoring and attention regulation, respectively-during deep meditation. These results suggest a functional dissociation of the two classical neural signatures of meditation training, namely, alpha and theta oscillations. Moreover, while essential for overcoming 'hindrances', executive neural processing appears to be downregulated during deeper meditation experiences.

Abstract Image

Abstract Image

Abstract Image

α和θ振荡与冥想深度的递进程度成反比。
冥想训练被提议通过调节神经活动,特别是大脑的α和θ波振荡,以及自主神经活动来增强心理健康。虽然这种增强也取决于冥想的质量,但人们对这些神经和生理变化与冥想质量的关系知之甚少。一个模型将冥想质量描述为五个不断增加的“深度”层次:障碍、放松、集中、超个人品质和非二元性。我们研究了长期冥想者(ltm)和meditation-naïve对照组(ctl)自我报告的冥想深度的神经振荡(θ、α、β和γ)和生理(呼吸率、心率和心率变异性)相关性。为了确定冥想深度的神经和生理相关性,我们模拟了五个深度水平上自我报告的体验程度与多个神经和生理测量之间关系斜率的变化。ctl比ltm报告了更多的“障碍”,而ltm比ctl报告了更多的“超个人品质”和“非二元性”,证实了冥想深度的经验操纵。我们发现,在两组中,θ(4-6赫兹)和α(7-13赫兹)振荡与冥想深度的关系完全相反。θ振幅与“障碍”呈正相关,与冥想深度的增加呈负相关。α振幅与“障碍”呈负相关,与深度增加呈正相关。θ波与冥想深度之间负相关的增加发生在两组不同的头皮位置——ltm的额中线和ctl的额外侧——可能反映了深度冥想时执行加工的两个不同方面——分别是监测和注意调节的下调。这些结果表明,冥想训练的两个经典神经特征,即α和θ振荡的功能分离。此外,尽管对克服“障碍”至关重要,但在更深层次的冥想体验中,执行神经处理似乎被下调了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Neuroscience of Consciousness
Neuroscience of Consciousness Psychology-Clinical Psychology
CiteScore
6.90
自引率
2.40%
发文量
16
审稿时长
19 weeks
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