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Spatially Nonlinear Interdependence of Alpha-Oscillatory Neural Networks under Chan Meditation

机译:Chan冥想下Alpha振荡神经网络的空间非线性相互依赖性

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摘要

This paper reports the results of our investigation of the effects of Chan meditation on brain electrophysiological behaviors from the viewpoint of spatially nonlinear interdependence among regional neural networks. Particular emphasis is laid on the alpha-dominated EEG (electroencephalograph). Continuous-time wavelet transform was adopted to detect the epochs containing substantial alpha activities. Nonlinear interdependence quantified by similarity index S(>X∣>Y), the influence of source signal >Y on sink signal >X, was applied to the nonlinear dynamical model in phase space reconstructed from multichannel EEG. Experimental group involved ten experienced Chan-Meditation practitioners, while control group included ten healthy subjects within the same age range, yet, without any meditation experience. Nonlinear interdependence among various cortical regions was explored for five local neural-network regions, frontal, posterior, right-temporal, left-temporal, and central regions. In the experimental group, the inter-regional interaction was evaluated for the brain dynamics under three different stages, at rest (stage R, pre-meditation background recording), in Chan meditation (stage M), and the unique Chakra-focusing practice (stage C). Experimental group exhibits stronger interactions among various local neural networks at stages M and C compared with those at stage R. The intergroup comparison demonstrates that Chan-meditation brain possesses better cortical inter-regional interactions than the resting brain of control group.
机译:本文从区域神经网络之间空间非线性相互依赖的角度,报道了我们对禅修冥想对大脑电生理行为影响的研究结果。特别强调的是阿尔法主导的脑电图(脑电图仪)。采用连续时间小波变换来检测包含大量阿尔法活动的时期。通过相似性指标S(> X ∣ > Y ),信源信号> Y 对宿信号> X ,应用于从多通道脑电图重建的相空间非线性动力学模型中。实验组包括十名经验丰富的禅修师,而对照组则包括十名相同年龄范围内的健康受试者,但没有任何冥想经验。探讨了五个局部神经网络区域(额叶,后部,右颞,左颞和中部区域)在各个皮质区域之间的非线性相互依赖性。在实验组中,评估了三个不同阶段在静息(R阶段,冥想前的背景记录),Chan冥想(M阶段)和独特的脉轮聚焦练习( C阶段)。实验组在M和C阶段与在R阶段相比,在各个局部神经网络之间表现出更强的交互作用。组间比较表明,Chan冥想大脑比对照组的静息大脑具有更好的皮质区域间交互作用。

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