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Characterizing the Dynamical Complexity Underlying Meditation

机译:表征冥想背后的动态复杂性

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摘要

Over the past 2,500 years, contemplative traditions have explored the nature of the mind using meditation. More recently, neuroimaging research on meditation has revealed differences in brain function and structure in meditators. Nevertheless, the underlying neural mechanisms are still unclear. In order to understand how meditation shapes global activity through the brain, we investigated the spatiotemporal dynamics across the whole-brain functional network using the Intrinsic Ignition Framework. Recent neuroimaging studies have demonstrated that different states of consciousness differ in their underlying dynamical complexity, i.e., how the broadness of communication is elicited and distributed through the brain over time and space. In this work, controls and experienced meditators were scanned using functional magnetic resonance imaging (fMRI) during resting-state and meditation (focused attention on breathing). Our results evidenced that the dynamical complexity underlying meditation shows less complexity than during resting-state in the meditator group but not in the control group. Furthermore, we report that during resting-state, the brain activity of experienced meditators showed higher metastability (i.e., a wider dynamical regime over time) than the one observed in the control group. Overall, these results indicate that the meditation state operates in a different dynamical regime compared to the resting-state.
机译:在过去的2500年中,沉思传统通过冥想探索了心灵的本质。最近,关于冥想的神经影像学研究揭示了冥想者大脑功能和结构的差异。然而,潜在的神经机制仍不清楚。为了了解冥想如何塑造大脑的整体活动,我们使用内在点火框架研究了整个大脑功能网络的时空动态。最近的神经影像学研究表明,不同的意识状态在其潜在的动力学复杂性方面是不同的,即,如何在时间和空间上通过大脑激发并分布交流的广度。在这项工作中,在静息状态和冥想期间(使用呼吸功能),使用功能磁共振成像(fMRI)对对照组和有经验的冥想者进行了扫描。我们的研究结果表明,冥想基础的动态复杂性比静息状态下的冥想者组复杂,而对照组则没有。此外,我们报告说,在静息状态下,有经验的冥想者的大脑活动显示出比对照组中观察到的更高的亚稳态(即,随时间变化的动态范围更广)。总体而言,这些结果表明,与静息状态相比,冥想状态在不同的动力状态下运行。

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