Witte Matthias, Patino Luis, Andrykiewicz Agnieszka, Hepp-Reymond Marie-Claude, Kristeva Rumyana
Neurological Clinic, Albert-Ludwigs-University, Breisacher Strasse 64, 79106 Freiburg, Germany.
Eur J Neurosci. 2007 Dec;26(12):3564-70. doi: 10.1111/j.1460-9568.2007.05942.x. Epub 2007 Dec 4.
Although corticomuscular synchronization in the beta range (15-30 Hz) was shown to occur during weak steady-state contractions, an examination of low-level forces around 10% of the maximum voluntary contraction (MVC) is still missing. We addressed this question by investigating coherence between electroencephalogram (EEG) and electromyogram (EMG) as well as cortical spectral power during a visuomotor task. Eight healthy right-handed subjects compensated isometrically static forces at a level of 4% and 16% of MVC with their right index finger. While 4% MVC was accompanied by low coherence values in the middle to high beta frequency range (25-30 Hz), a significant increase of coherence mainly confined to low beta frequencies (19-20 Hz) was observed with force of 16% MVC. Furthermore, this increase was associated with better performance, as reflected in decreased relative error in force during 16% MVC. We additionally show that periods of good motor performance within each condition were associated with higher values of EEG-EMG coherence and spectral power. In conclusion, our results suggest a role for beta-range corticomuscular coherence in effective sensorimotor integration, thus stabilizing corticospinal communication.
尽管已表明在弱稳态收缩期间会出现β频段(15 - 30赫兹)的皮质-肌肉同步,但仍缺少对约为最大自主收缩(MVC)10%的低水平力量的研究。我们通过在一项视觉运动任务中研究脑电图(EEG)与肌电图(EMG)之间的相干性以及皮质频谱功率来解决这个问题。八名健康的右利手受试者用其右手食指以MVC的4%和16%的水平等长补偿静态力。当4%MVC时,在中高β频率范围(25 - 30赫兹)伴随着低相干值,而当力为16%MVC时,观察到相干性显著增加,主要局限于低β频率(19 - 20赫兹)。此外,这种增加与更好的表现相关,这在16%MVC期间力的相对误差降低中得到体现。我们还表明,每种情况下良好运动表现的时期与EEG - EMG相干性和频谱功率的较高值相关。总之,我们的结果表明β频段皮质-肌肉相干性在有效的感觉运动整合中起作用,从而稳定皮质脊髓通信。