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姿势摆动与非稳定站立时头皮 EEG 之间的相位-振幅耦合的与年龄相关的拓扑组织。

Age-Related Topological Organization of Phase-Amplitude Coupling Between Postural Fluctuations and Scalp EEG During Unsteady Stance.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2024;32:3231-3239. doi: 10.1109/TNSRE.2024.3451023. Epub 2024 Sep 6.

Abstract

Through phase-amplitude analysis, this study investigated how low-frequency postural fluctuations interact with high-frequency scalp electroencephalography (EEG) amplitudes, shedding light on age-related mechanic differences in balance control during uneven surface navigation. Twenty young ( 24.1 ± 1.9 years) and twenty older adults ( 66.2 ± 2.7 years) stood on a training stabilometer with visual guidance, while their scalp EEG and stabilometer plate movements were monitored. In addition to analyzing the dynamics of the postural fluctuation phase, phase-amplitude coupling (PAC) for postural fluctuations below 2 Hz and within EEG sub-bands (theta: 4-7 Hz, alpha: 8-12 Hz, beta: 13-35 Hz) was calculated. The results indicated that older adults exhibited significantly larger postural fluctuation amplitudes(p <0.001) and lower mean frequencies of the postural fluctuation phase ( p = 0.005 ) than young adults. The PAC between postural fluctuation and theta EEG (FCz and bilateral temporal-parietal-occipital area), as well as that between postural fluctuation and alpha EEG oscillation, was lower in older adults than in young adults (p <0.05). In contrast, the PAC between the phase of postural fluctuation and beta EEG oscillation, particularly in C3 ( p=0.006 ), was higher in older adults than in young adults. In summary, the postural fluctuation phase and phase-amplitude coupling between postural fluctuation and EEG are sensitive indicators of the age-related decline in postural adjustments, reflecting less flexible motor state transitions and adaptive changes in error monitoring and visuospatial attention.

摘要

通过相位-振幅分析,本研究调查了低频姿势波动如何与高频头皮脑电图(EEG)振幅相互作用,揭示了在不平坦表面导航过程中,与年龄相关的平衡控制力学差异。二十名年轻成年人(24.1±1.9 岁)和二十名老年成年人(66.2±2.7 岁)在有视觉指导的训练稳定器上站立,同时监测他们的头皮 EEG 和稳定器板运动。除了分析姿势波动相位的动力学外,还计算了低于 2 Hz 且在 EEG 子带(θ:4-7 Hz、α:8-12 Hz、β:13-35 Hz)内的姿势波动的相位-振幅耦合(PAC)。结果表明,老年成年人的姿势波动幅度明显更大(p<0.001),姿势波动相位的平均频率更低(p=0.005)。与年轻成年人相比,老年成年人的姿势波动与θ EEG(FCz 和双侧颞顶枕区)之间以及与α EEG 振荡之间的 PAC 较低(p<0.05)。相比之下,与姿势波动相位和β EEG 振荡之间的 PAC 较高,特别是在 C3(p=0.006),老年成年人高于年轻成年人。综上所述,姿势波动相位和姿势波动与 EEG 之间的相位-振幅耦合是与年龄相关的姿势调整下降的敏感指标,反映了运动状态转换的灵活性降低以及错误监控和视空间注意力的适应性变化。

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