论文标题

振动本体感受刺激期间的姿势控制适应和习惯:HD-EEG对皮质募集和运动学的研究

Postural control adaptation and habituation during vibratory proprioceptive stimulation: an HD-EEG investigation of cortical recruitment and kinematics

论文作者

Barollo, Fabio, Friðriksdóttir, Rún, Edmunds, Kyle J., Karlsson, Gunnar H., Svansson, Halldór Á., Hassan, Mahmoud, Fratini, Antonio, Petersen, Hannes, Gargiulo, Paolo

论文摘要

本工作的目的是测量HD-EEG的姿势运动学和功率频谱变化,以评估适应和习惯性姿势扰动期间皮质活动的变化。为了引起本体感受的姿势扰动,将85 Hz的振动刺激应用于四个75秒的刺激期内33名受试者的小腿肌肉。根据假体二元序列进行刺激。将振动冲动同步到高密度脑电图(HD-EEG,256个通道)。在四个频带上分析了绝对光谱功率(ASP)的变化(Delta:0.5-3.5 Hz; Theta:3.5-7.5 Hz; Alpha:7.5-12.5 Hz; beta:beta:12.5-30 Hz)。录制了由脚执行的扭矩的力平台,并计算出标准化的摇摆路径长度(SPL)作为每个时期内姿势性能的构造。 SPL值表明在试验期间的姿势性能有所改善。在评估姿势适应时发现了绝对功率值(ASP)的显着差异:闭合眼试验的额叶中央区域的theta带ASP的增加,在露天区域的theta和beta频段ASP增加了开放式试验试验。在习惯中,在闭闭眼试验中未观察到ASP的显着变化,而睁开眼睛观察到Theta,Alpha和Beta Band ASP的增加。此外,敞开的试验通常在适应和习惯期间在所有频段中产生更多的ASP差异,这表明在姿势扰动期间的皮层活动可能会随着视觉反馈的可用性而上调。结果通过探索适应性和习惯性的对本体感受性姿势扰动的习惯和习惯期间的皮质活性和姿势运动学的动态变化,从而为病理姿势控制失败提供了更深入的见解。

The objective of the present work is to measure postural kinematics and power spectral variation from HD-EEG to assess changes in cortical activity during adaptation and habituation to postural perturbation. To evoke proprioceptive postural perturbation, vibratory stimulation at 85 Hz was applied to the calf muscles of 33 subjects over four 75-second stimulation periods. Stimulation was performed according to a pseudorandom binary sequence. Vibratory impulses were synchronized to high-density electroencephalography (HD-EEG, 256 channels). Changes in absolute spectral power (ASP) were analyzed over four frequency bands (Delta: 0.5-3.5 Hz; theta: 3.5-7.5 Hz; alpha: 7.5-12.5 Hz; beta:12.5-30 Hz). A force platform recorded torque actuated by the feet, and normalized sway path length (SPL) was computed as a construct for postural performance during each period. SPL values indicated improvement in postural performance over the trial periods. Significant variation in absolute power values (ASP) was found in assessing postural adaptation: an increase in theta band ASP in the frontal-central region for closed-eyes trials, an increase in theta and beta band ASP in the parietal region for open-eyes trials. In habituation, no significant variations in ASP were observed during closed-eyes trials, whereas an increase in theta, alpha, and beta band ASP was observed with open eyes. Furthermore, open-eyed trials generally yielded a greater number of significant ASP differences across all bands during both adaptation and habituation, suggesting that following cortical activity during postural perturbation may be up-regulated with the availability of visual feedback. Results provide deeper insight into pathological postural control failure by exploring the dynamic changes in both cortical activity and postural kinematics during adaptation and habituation to proprioceptive postural perturbation.

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