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一种自我参照的默认脑状态:闭眼休息和超觉静坐练习期间的相干性、功率及eLORETA源模式。

A self-referential default brain state: patterns of coherence, power, and eLORETA sources during eyes-closed rest and Transcendental Meditation practice.

作者信息

Travis Fred, Haaga David A F, Hagelin John, Tanner Melissa, Arenander Alaric, Nidich Sanford, Gaylord-King Carolyn, Grosswald Sarina, Rainforth Maxwell, Schneider Robert H

机构信息

Center for Brain, Consciousness and Cognition, Maharishi University of Management, Fairfield, IA 52557, USA.

出版信息

Cogn Process. 2010 Feb;11(1):21-30. doi: 10.1007/s10339-009-0343-2. Epub 2009 Oct 28.

DOI:10.1007/s10339-009-0343-2
PMID:19862565
Abstract

Activation of a default mode network (DMN) including frontal and parietal midline structures varies with cognitive load, being more active during low-load tasks and less active during high-load tasks requiring executive control. Meditation practices entail various degrees of cognitive control. Thus, DMN activation patterns could give insight into the nature of meditation practices. This 10-week random assignment study compared theta2, alpha1, alpha2, beta1, beta2 and gamma EEG coherence, power, and eLORETA cortical sources during eyes-closed rest and Transcendental Meditation (TM) practice in 38 male and female college students, average age 23.7 years. Significant brainwave differences were seen between groups. Compared to eyes-closed rest, TM practice led to higher alpha1 frontal log-power, and lower beta1 and gamma frontal and parietal log-power; higher frontal and parietal alpha1 interhemispheric coherence and higher frontal and frontal-central beta2 intrahemispheric coherence. eLORETA analysis identified sources of alpha1 activity in midline cortical regions that overlapped with the DMN. Greater activation in areas that overlap the DMN during TM practice suggests that meditation practice may lead to a foundational or 'ground' state of cerebral functioning that may underlie eyes-closed rest and more focused cognitive processes.

摘要

包括额叶和顶叶中线结构在内的默认模式网络(DMN)的激活随认知负荷而变化,在低负荷任务期间更活跃,而在需要执行控制的高负荷任务期间则不太活跃。冥想练习需要不同程度的认知控制。因此,DMN激活模式可以深入了解冥想练习的本质。这项为期10周的随机分配研究比较了38名平均年龄为23.7岁的男女大学生在闭眼休息和超觉静坐(TM)练习期间的θ2、α1、α2、β1、β2和γ脑电相干性、功率以及eLORETA皮质源。两组之间观察到显著的脑电波差异。与闭眼休息相比,TM练习导致更高的α1额叶对数功率,以及更低的β1和γ额叶及顶叶对数功率;更高的额叶和顶叶α1半球间相干性以及更高的额叶和额中央β2半球内相干性。eLORETA分析确定了中线皮质区域中与DMN重叠的α1活动源。TM练习期间与DMN重叠区域的更大激活表明,冥想练习可能会导致一种大脑功能的基础或“基础”状态,这种状态可能是闭眼休息和更专注的认知过程的基础。

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