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β频段脑电图-肌电图相干性与等长补偿以增加调制的低水平力量。

Beta-range EEG-EMG coherence with isometric compensation for increasing modulated low-level forces.

作者信息

Chakarov Vihren, Naranjo José Raúl, Schulte-Mönting Jürgen, Omlor Wolfgang, Huethe Frank, Kristeva Rumyana

机构信息

Neurological Clinic, University Freiburg, Freiburg, Germany.

出版信息

J Neurophysiol. 2009 Aug;102(2):1115-20. doi: 10.1152/jn.91095.2008. Epub 2009 May 20.

Abstract

Corticomuscular synchronization has been shown to occur in beta (15-30 Hz) and gamma range (30-45 Hz) during isometric compensation of static and dynamic (periodically modulated) low-level forces, respectively. However, it is still unknown to what extent these synchronization processes in beta and gamma range are modified with increasing modulated force. We addressed this question by investigating the corticomuscular coherence (CMC) between the electroencephalogram (EEG) and electromyogram (EMG) from the first dorsal interosseus muscle (FDI) as well as the cortical and muscular spectral power during a visuomotor task where different levels of a dynamic (modulated) force were used. Seven healthy right-handed female subjects compensated dynamic forces at 8, 16, and 24% of the maximal voluntary contraction (MVC) isometrically with their right index finger. Under the three conditions investigated, we found a broad-band CMC comprising both beta and gamma range and peaking at approximately 22 Hz within the beta band. This broad-band coherence increased linearly with higher force level. A separate analysis of the gamma range CMC did not show significant modulation of the CMC by the force levels. EEG and EMG spectral power did not show any significant difference among the three force conditions. Our results favor the view that the function of beta range CMC is not specific for low-level static forces only. The sensorimotor system may resort to stronger and also broader beta-range CMC to generate stable corticospinal interaction during increased force level, as well as when compensating for dynamic modulated forces. This finding re-enforces the importance of the beta-range EEG-EMG coherence in sensorimotor integration.

摘要

已表明,在分别对静态和动态(周期性调制)低水平力进行等长补偿期间,皮质 - 肌肉同步分别出现在β(15 - 30Hz)和γ范围(30 - 45Hz)。然而,随着调制力增加,β和γ范围内的这些同步过程在多大程度上发生改变仍不清楚。我们通过研究在一项视觉运动任务中,来自第一背侧骨间肌(FDI)的脑电图(EEG)和肌电图(EMG)之间的皮质 - 肌肉相干性(CMC)以及皮质和肌肉频谱功率来解决这个问题,该视觉运动任务使用了不同水平的动态(调制)力。七名健康的右利手女性受试者用右手食指等长补偿8%、16%和24%最大自主收缩(MVC)的动态力。在所研究的三种条件下,我们发现了一个宽带CMC,其包含β和γ范围,并且在β带内约22Hz处达到峰值。这种宽带相干性随力水平升高呈线性增加。对γ范围CMC的单独分析未显示力水平对CMC有显著调制。EEG和EMG频谱功率在三种力条件之间未显示任何显著差异。我们的结果支持这样一种观点,即β范围CMC的功能并非仅特定于低水平静态力。感觉运动系统可能会借助更强且更宽的β范围CMC,以便在力水平增加时以及在补偿动态调制力时产生稳定的皮质脊髓相互作用。这一发现强化了β范围EEG - EMG相干性在感觉运动整合中的重要性。

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