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深度专注冥想背后的动态脑状态:一项7-T功能磁共振成像强化案例研究。

Dynamic brain states underlying advanced concentrative absorption meditation: A 7-T fMRI-intensive case study.

作者信息

Treves Isaac N, Yang Winson F Z, Sparby Terje, Sacchet Matthew D

机构信息

Meditation Research Program, Department of Psychiatry, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.

Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.

出版信息

Netw Neurosci. 2025 Mar 3;9(1):125-145. doi: 10.1162/netn_a_00432. eCollection 2025.

Abstract

Advanced meditation consists of states and stages of practice that unfold with mastery and time. Dynamic functional connectivity (DFC) analysis of fMRI could identify brain states underlying advanced meditation. We conducted an intensive DFC case study of a meditator who completed 27 runs of advanced absorptive concentration meditation (ACAM-J), concurrently with 7-T fMRI and phenomenological reporting. We identified three brain states that marked differences between ACAM-J and nonmeditative control conditions. These states were characterized as a DMN-anticorrelated brain state, a hyperconnected brain state, and a sparsely connected brain state. Our analyses indicate higher prevalence of the DMN-anticorrelated brain state during ACAM-J than control states, and the prevalence increased significantly with deeper ACAM-J states. The hyperconnected brain state was also more common during ACAM-J and was characterized by elevated thalamocortical connectivity and somatomotor network connectivity. The hyperconnected brain state significantly decreased over the course of ACAM-J, associating with self-reports of wider attention and diminished physical sensations. This brain state may be related to sensory awareness. Advanced meditators have developed well-honed abilities to move in and out of different altered states of consciousness, and this study provides initial evidence that functional neuroimaging can objectively track their dynamics.

摘要

高级冥想由随着掌握程度和时间推移而展开的练习状态和阶段组成。功能磁共振成像(fMRI)的动态功能连接(DFC)分析可以识别高级冥想背后的大脑状态。我们对一名冥想者进行了深入的DFC案例研究,该冥想者在进行7-T功能磁共振成像和现象学报告的同时,完成了27次高级专注冥想(ACAM-J)。我们确定了三种大脑状态,这些状态标志着ACAM-J与非冥想对照条件之间的差异。这些状态的特征分别为与默认模式网络(DMN)反相关的大脑状态、超连接大脑状态和稀疏连接大脑状态。我们的分析表明,在ACAM-J期间,与默认模式网络反相关的大脑状态比对照状态更为普遍,并且随着ACAM-J状态的加深,其普遍性显著增加。超连接大脑状态在ACAM-J期间也更为常见,其特征是丘脑皮质连接和躯体运动网络连接增强。在ACAM-J过程中,超连接大脑状态显著减少,这与注意力更广泛和身体感觉减弱的自我报告相关。这种大脑状态可能与感觉意识有关。高级冥想者已经发展出了在不同意识改变状态之间自如转换的精湛能力,本研究提供了初步证据,表明功能神经成像可以客观地追踪他们的动态变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd50/11949543/67084d19afe2/netn-9-1-125-g001.jpg

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