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在人类单腿站立过程中,支撑腿和地面稳定性调节皮层活动。

Stance leg and surface stability modulate cortical activity during human single leg stance.

作者信息

Büchel Daniel, Lehmann Tim, Ullrich Sarah, Cockcroft John, Louw Quinette, Baumeister Jochen

机构信息

Exercise Science and Neuroscience Unit, Department of Exercise and Health, Faculty of Science, Paderborn University, Warburger Straße 100, 33098, Paderborn, Germany.

Department of Child and Adolescent Psychiatry and Psychotherapy, TU Dresden, Dresden, Germany.

出版信息

Exp Brain Res. 2021 Apr;239(4):1193-1202. doi: 10.1007/s00221-021-06035-6. Epub 2021 Feb 11.

Abstract

Mobile Electroencephalography (EEG) provides insights into cortical contributions to postural control. Although changes in theta (4-8 Hz) and alpha frequency power (8-12 Hz) were shown to reflect attentional and sensorimotor processing during balance tasks, information about the effect of stance leg on cortical processing related to postural control is lacking. Therefore, the aim was to examine patterns of cortical activity during single-leg stance with varying surface stability. EEG and force plate data from 21 healthy males (22.43 ± 2.23 years) was recorded during unipedal stance (left/right) on a stable and unstable surface. Using source-space analysis, power spectral density was analyzed in the theta, alpha-1 (8-10 Hz) and alpha-2 (10-12 Hz) frequency bands. Repeated measures ANOVA with the factors leg and surface stability revealed significant interaction effects in the left (p = 0.045, η = 0.13) and right motor clusters (F = 16.156; p = 0.001, η = 0.41). Furthermore, significant main effects for surface stability were observed for the fronto-central cluster (theta), left and right motor (alpha-1), as well as for the right parieto-occipital cluster (alpha-1/alpha-2). Leg dependent changes in alpha-2 power may indicate lateralized patterns of cortical processing in motor areas during single-leg stance. Future studies may therefore consider lateralized patterns of cortical activity for the interpretation of postural deficiencies in unilateral lower limb injuries.

摘要

移动式脑电图(EEG)有助于深入了解皮层对姿势控制的作用。尽管已表明θ波(4 - 8赫兹)和α波频率功率(8 - 12赫兹)的变化反映了平衡任务期间的注意力和感觉运动处理,但关于支撑腿对与姿势控制相关的皮层处理的影响的信息尚缺。因此,本研究旨在探究在不同表面稳定性的单腿站立过程中的皮层活动模式。在稳定和不稳定表面上进行单腿站立(左/右)时,记录了21名健康男性(22.43 ± 2.23岁)的脑电图和测力板数据。使用源空间分析,在θ波、α1(8 - 10赫兹)和α2(10 - 12赫兹)频段分析功率谱密度。对腿部和表面稳定性因素进行重复测量方差分析,结果显示在左侧(p = 0.045,η = 0.13)和右侧运动簇(F = 16.156;p = 0.001,η = 0.41)存在显著的交互作用。此外,在前额中央簇(θ波)、左侧和右侧运动区(α1)以及右侧顶枕簇(α1/α2)观察到表面稳定性的显著主效应。α2功率的腿部依赖性变化可能表明单腿站立期间运动区域皮层处理的侧化模式。因此,未来的研究在解释单侧下肢损伤的姿势缺陷时,可能需要考虑皮层活动的侧化模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6839/8068619/4966d4816020/221_2021_6035_Fig1_HTML.jpg

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