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What it means to be Zen: Marked modulations of local and interareal synchronization during open monitoring meditation

机译:成为Zen意味着什么:在开放式监控冥想中标记的局部和区域间同步调制

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摘要

Experienced meditators are able to voluntarily modulate their state of consciousness and attention. In the present study, we took advantage of this ability and studied brain activity related to the shift of mental state. Electrophysiological activity, i.e. EEG, was recorded from 11 subjects with varying degrees of meditation experience during Zen meditation (a form of open monitoring meditation) and during non-meditation rest. On a behavioral level, mindfulness scores were assessed using the Mindfulness Attention and Awareness Scale (MAAS). Analysis of EEG source power revealed the so far unreported finding that MAAS scores significantly correlated with gamma power (30–250 Hz), particularly high-frequency gamma (100–245 Hz), during meditation. High levels of mindfulness were related to increased high-frequency gamma, for example, in the cingulate cortex and somatosensory cortices. Further, we analyzed the relationship between connectivity during meditation and self-reported mindfulness (MAAS). We found a correlation between graph measures in the 160–170 Hz range and MAAS scores. Higher levels of mindfulness were related to lower small worldedness as well as global and local clustering in paracentral, insular, and thalamic regions during meditation. In sum, the present study shows significant relationships of mindfulness and brain activity during meditation indicated by measures of oscillatory power and graph theoretical measures. The most prominent effects occur in brain structures crucially involved in processes of awareness and attention, which also show structural changes in short- and long-term meditators, suggesting continuative alterations in the meditating brain. Overall, our study reveals strong changes in ongoing oscillatory activity as well as connectivity patterns that appear to be sensitive to the psychological state changes induced by Zen meditation.
机译:经验丰富的冥想者能够自愿调节其意识和注意力状态。在本研究中,我们利用了这种能力并研究了与精神状态变化有关的大脑活动。记录了11位受试者的电生理活动(即EEG),这些受试者在禅修(一种开放式的监视冥想)和非静息休息期间都有不同程度的冥想经历。在行为水平上,使用正念注意和意识量表(MAAS)评估正念得分。对脑电信号源功率的分析揭示了迄今为止尚未发现的发现,即在冥想期间,MAAS评分与伽马功率(30–250 Hz),特别是高频伽马(100–245 Hz)显着相关。高度的正念与高频伽马增加有关,例如在扣带状皮层和体感皮层中。此外,我们分析了冥想过程中的连通性与自我报告的正念(MAAS)之间的关系。我们发现160-170 Hz范围内的图形度量与MAAS得分之间存在相关性。冥想期间,较高的正念水平与较低的小世俗性以及中央下,岛屿和丘脑区域的全局和局部聚类有关。总而言之,本研究显示了冥想过程中正念与大脑活动之间的显着关系,这些关系由振荡能力的度量和图的理论度量表示。最显着的影响发生在关键地参与意识和注意力过程的大脑结构中,这也显示了短期和长期冥想者的结构变化,表明冥想大脑的连续变化。总的来说,我们的研究揭示了正在进行的振动活动的强烈变化以及对禅宗冥想引起的心理状态变化敏感的连通性模式。

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