Robinson P A, Rennie C J, Rowe D L
Theoretical Physics Group and Center for Wave Physics, School of Physics, University of Sydney, New South Wales 2006, Australia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Apr;65(4 Pt 1):041924. doi: 10.1103/PhysRevE.65.041924. Epub 2002 Apr 11.
Links between electroencephalograms (EEGs) and underlying aspects of neurophysiology and anatomy are poorly understood. Here a nonlinear continuum model of large-scale brain electrical activity is used to analyze arousal states and their stability and nonlinear dynamics for physiologically realistic parameters. A simple ordered arousal sequence in a reduced parameter space is inferred and found to be consistent with experimentally determined parameters of waking states. Instabilities arise at spectral peaks of the major clinically observed EEG rhythms-mainly slow wave, delta, theta, alpha, and sleep spindle-with each instability zone lying near its most common experimental precursor arousal states in the reduced space. Theta, alpha, and spindle instabilities evolve toward low-dimensional nonlinear limit cycles that correspond closely to EEGs of petit mal seizures for theta instability, and grand mal seizures for the other types. Nonlinear stimulus-induced entrainment and seizures are also seen, EEG spectra and potentials evoked by stimuli are reproduced, and numerous other points of experimental agreement are found. Inverse modeling enables physiological parameters underlying observed EEGs to be determined by a new, noninvasive route. This model thus provides a single, powerful framework for quantitative understanding of a wide variety of brain phenomena.
脑电图(EEG)与神经生理学和解剖学潜在方面之间的联系尚不清楚。在此,使用大规模脑电活动的非线性连续模型来分析生理现实参数下的觉醒状态及其稳定性和非线性动力学。在简化参数空间中推断出一个简单的有序觉醒序列,并发现其与实验确定的清醒状态参数一致。主要临床观察到的脑电节律——主要是慢波、δ波、θ波、α波和睡眠纺锤波——的频谱峰值处会出现不稳定性,每个不稳定区域在简化空间中都位于其最常见的实验前驱觉醒状态附近。θ波、α波和纺锤波不稳定性会演变为低维非线性极限环,对于θ波不稳定性,其与失神发作的脑电图密切对应,对于其他类型则与大发作的脑电图密切对应。还观察到非线性刺激诱导的夹带和发作,再现了刺激诱发的脑电图频谱和电位,并发现了许多其他实验一致性点。逆建模能够通过一种新的非侵入性途径确定观察到的脑电图背后的生理参数。因此,该模型为定量理解各种脑现象提供了一个单一、强大的框架。