Thatcher Robert W, North Duane M, Biver Carl J
Department of Neurology, University of South Florida College of Medicine, Tampa, Florida, USA.
Hum Brain Mapp. 2008 Dec;29(12):1400-15. doi: 10.1002/hbm.20474.
The purpose of this study was to explore human development of EEG coherence and phase differences over the period from infancy to 16 years of age. The electroencephalogram (EEG) was recorded from 19 scalp locations from 458 subjects ranging in age from 2 months to 16.67 years. EEG coherence and EEG phase differences were computed for the left and right hemispheres in the posterior-to-anterior direction (O1/2-P3/4, O1/2-C3/4, O1/2-F3/4, and O1/2-Fp1/2) and the anterior-to- posterior direction (Fp1/2-F3/4, Fp1/2-C3/4, Fp1/2-P3/4, and Fp1/2-O1/2) in the beta frequency band (13-25 Hz). Sliding averages of EEG coherence and phase were computed using 1 year averages and 9 month overlapping that produced 64 means from 0.44 years of age to 16.22 years of age. Rhythmic oscillations in coherence and phase were noted in all electrode combinations. Different developmental trajectories were present for coherence and phase differences and for anterior-to-posterior and posterior-to-anterior directions and inter-electrode distance. Large changes in EEG coherence and phase were present from approximately 6 months to 4 years of age followed by a significant linear trend to higher coherence in short distance inter-electrode distances and longer phase delays in long inter-electrode distances. The results are consistent with a genetic model of rhythmic long term connection formation that occurs in cycles along a curvilinear trajectory toward adulthood. Competition for dendritic space, development of complexity, and nonlinear dynamic oscillations are discussed.
本研究的目的是探讨从婴儿期到16岁期间脑电图(EEG)相干性和相位差的人类发育情况。对458名年龄在2个月至16.67岁之间的受试者,从19个头皮位置记录脑电图。计算了左右半球在β频段(13 - 25Hz)从后向前方向(O1/2 - P3/4、O1/2 - C3/4、O1/2 - F3/4和O1/2 - Fp1/2)以及从前向后方向(Fp1/2 - F3/4、Fp1/2 - C3/4、Fp1/2 - P3/4和Fp1/2 - O1/2)的EEG相干性和EEG相位差。使用1年平均值和9个月重叠期计算EEG相干性和相位的滑动平均值,从而得出从0.44岁到16.22岁的64个均值。在所有电极组合中均观察到相干性和相位的节律性振荡。相干性和相位差以及从前向后和从后向前方向以及电极间距离存在不同的发育轨迹。从大约6个月到4岁,EEG相干性和相位出现了较大变化,随后在短电极间距离处相干性显著呈线性趋势升高,在长电极间距离处相位延迟更长。这些结果与一种节律性长期连接形成的遗传模型一致,该模型沿着向成年期的曲线轨迹以周期形式发生。文中还讨论了树突空间的竞争、复杂性的发展以及非线性动态振荡。