Lin D C, Sharif A, Kwan H C
Mech. and Ind. Eng. Dept., Ryerson University, Toronto, ON, Canada.
Biol Cybern. 2006 Nov;95(5):401-11. doi: 10.1007/s00422-006-0094-4. Epub 2006 Aug 8.
The coexistence of the broad-band fluctuation and alpha rhythm of the brain dynamics is studied based on the zero-crossing property of the local electroencephalographic (EEG) recording in eyes closed and eyes open. A two-component zero-crossing scenario, consisting of a broad-band fractal and narrow-band rhythm components, is assumed. Scaling is found in the power law distribution p(tau) approximately tau(-nu) of the crossing time interval tau of the broad-band fluctuation. In alpha dominant brain state, the alpha rhythm interval L also exhibits scaling in the form of power law distribution: p(L) approximately L(phi). Our main result is the relationship nu + phi approximately 3 that characterizes the organization of these two prominent features of the brain dynamics. The possible role of self-organized criticality of punctuated equilibrium in this organization is discussed.
基于闭眼和睁眼时局部脑电图(EEG)记录的过零特性,研究了脑动力学中宽带波动与α节律的共存情况。假设存在一种由宽带分形和窄带节律成分组成的双组分过零情形。在宽带波动的过零时间间隔τ的幂律分布p(τ)≈τ^(-ν)中发现了标度律。在α主导的脑状态下,α节律间隔L也以幂律分布的形式呈现标度律:p(L)≈L^φ。我们的主要结果是ν+φ≈3这一关系,它表征了脑动力学这两个显著特征的组织形式。讨论了间断平衡的自组织临界性在这种组织形式中可能发挥的作用。