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内在神经时程在不同的冥想技术中表现出不同的长度。

Intrinsic neural timescales exhibit different lengths in distinct meditation techniques.

机构信息

School of Psychology, University of Ottawa, 136 Jean-Jacques Lussier, Ottawa K1N 6N5, ON, Canada.

The Royal's Institute of Mental Health Research & University of Ottawa, Brain and Mind Research Institute, Centre for Neural Dynamics, Faculty of Medicine, University of Ottawa, 145 Carling Avenue, Rm. 6435, Ottawa K1Z 7K4, ON, Canada.

出版信息

Neuroimage. 2024 Aug 15;297:120745. doi: 10.1016/j.neuroimage.2024.120745. Epub 2024 Jul 27.

Abstract

Meditation encompasses a range of practices employing diverse induction techniques, each characterized by a distinct attentional focus. In Mantra meditation, for instance, practitioners direct their attention narrowly to a given sentence that is recursively repeated, while other forms of meditation such as Shoonya meditation are induced by a wider attentional focus. Here we aimed to identify the neural underpinnings and correlates associated with this spectrum of distinct attentional foci. To accomplish this, we used EEG data to estimate the brain's intrinsic neural timescales (INTs), that is, its temporal windows of activity, by calculating the Autocorrelation Window (ACW) of the EEG signal. The autocorrelation function measures the similarity of a timeseries with a time-lagged version of itself by correlating the signal with itself on different time lags, consequently providing an estimation of INTs length. Therefore, through using the ACW metric, our objective was to explore whether there is a correspondence between the length of the brain's temporal windows of activity and the width of the attentional scope during various meditation techniques. This was performed on three groups of highly proficient practitioners belonging to different meditation traditions, as well as a meditation-naïve control group. Our results indicated that practices with a wider attentional focus, like Shoonya meditation, exhibit longer ACW durations compared to practices requiring a narrower attentional focus, such as Mantra meditation or body-scanning Vipassana meditation. Together, we demonstrated that distinct meditation techniques with varying widths of attentional foci exhibit unique durations in their brain's INTs. This may suggest that the width of the attentional scope during meditation relates and corresponds to the width of the brain's temporal windows in its neural activity. SIGNIFICANCE STATEMENT: Our research uncovered the neural mechanisms that underpin the attentional foci in various meditation techniques. We revealed that distinct meditation induction techniques, featured by their range of attentional widths, are characterized by varying lengths of intrinsic neural timescales (INTs) within the brain, as measured by the Autocorrelation Window function. This finding may bridge the gap between the width of attentional windows (subjective) and the width of the temporal windows in the brain's neural activity (objective) during different meditation techniques, offering a new understanding of how cognitive and neural processes are related to each other. This work holds significant implications, especially in the context of the increasing use of meditation in mental health and well-being interventions. By elucidating the distinct neural foundations of different meditation techniques, our research aims to pave the way for developing more tailored and effective meditation-based treatments.

摘要

冥想涵盖了一系列采用不同诱导技术的实践,每种技术都有其独特的注意力焦点。例如,在念咒冥想中,练习者将注意力狭隘地集中在反复重复的特定句子上,而其他形式的冥想,如 Shoonya 冥想,则通过更广泛的注意力焦点来诱导。在这里,我们旨在确定与这种不同注意力焦点范围相关的神经基础和相关性。为了实现这一目标,我们使用 EEG 数据通过计算 EEG 信号的自相关窗口(ACW)来估计大脑的内在神经时间尺度(INT),即大脑活动的时间窗口。自相关函数通过将信号与自身在不同时间滞后上进行相关来测量时间序列的相似性,从而提供 INT 长度的估计。因此,通过使用 ACW 度量,我们的目标是探索在不同的冥想技术中,大脑活动的时间窗口长度与注意力范围的宽度之间是否存在对应关系。这是通过对属于不同冥想传统的三组非常熟练的练习者以及一组冥想新手对照组进行的。我们的结果表明,像 Shoonya 冥想这样的注意力范围较宽的练习与需要较窄注意力焦点的练习(如念咒冥想或身体扫描内观冥想)相比,具有更长的 ACW 持续时间。总的来说,我们证明了具有不同注意力焦点宽度的不同冥想技术在其大脑的 INT 中具有独特的持续时间。这可能表明,冥想期间注意力范围的宽度与大脑神经活动中时间窗口的宽度有关且对应。意义声明:我们的研究揭示了各种冥想技术中注意力焦点的神经机制。我们发现,不同的冥想诱导技术,以其注意力宽度范围为特征,其特点是大脑内在神经时间尺度(INT)的长度不同,这是通过自相关窗口函数来衡量的。这一发现可能弥合了不同冥想技术中注意力窗口的宽度(主观)和大脑神经活动中时间窗口的宽度(客观)之间的差距,为理解认知和神经过程如何相互关联提供了新的认识。这项工作具有重要意义,特别是在冥想在心理健康和福祉干预中越来越多地被使用的背景下。通过阐明不同冥想技术的独特神经基础,我们的研究旨在为开发更具针对性和更有效的基于冥想的治疗方法铺平道路。

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