Omlor Wolfgang, Patino Luis, Hepp-Reymond Marie-Claude, Kristeva Rumyana
Neurological Clinic, Albert-Ludwigs-University, Breisacher Strasse 64, 79106 Freiburg, Germany.
Neuroimage. 2007 Feb 1;34(3):1191-8. doi: 10.1016/j.neuroimage.2006.10.018. Epub 2006 Dec 19.
The beta-range synchronization between cortical motor and muscular activity as revealed by EEG/MEG-EMG coherence has been extensively investigated for steady-state motor output. However, there is a lack of information on the modulation of the corticomuscular coherence in conjunction with dynamic force output. We addressed this question comparing the EEG-EMG coherence and the cortical motor spectral power in eight healthy subjects in a visuomotor task, in which the subjects exerted a steady-state or periodically modulated dynamic isometric force output with their right-index finger to keep a visual cursor within a target zone. In the static condition, significant coherence was confined to the beta-range. In the dynamic condition, the most distinct coherence occurred in the gamma-range and the significant beta-range coherence was strikingly reduced. The cortical motor power in the beta-range during dynamic force output was decreased, whereas the power in the gamma-range remained without significant change. We conclude that during dynamic force the corticospinal oscillation mode of the sensorimotor system shifts towards higher (principally gamma) frequencies for the rapid integration of the visual and somatosensory information required to produce the appropriate motor command.
脑电图/脑磁图-肌电图相干性所揭示的皮质运动与肌肉活动之间的β频段同步性已针对稳态运动输出进行了广泛研究。然而,关于结合动态力输出对皮质-肌肉相干性的调制,目前仍缺乏相关信息。我们通过比较八名健康受试者在视觉运动任务中的脑电图-肌电图相干性和皮质运动频谱功率来解决这个问题。在该任务中,受试者用右手食指施加稳态或周期性调制的动态等长力输出,以使视觉光标保持在目标区域内。在静态条件下,显著的相干性局限于β频段。在动态条件下,最明显的相干性出现在γ频段,且显著的β频段相干性显著降低。动态力输出期间β频段的皮质运动功率降低,而γ频段的功率保持无显著变化。我们得出结论,在动态力作用期间,感觉运动系统的皮质脊髓振荡模式会转向更高(主要是γ)频率,以便快速整合产生适当运动指令所需的视觉和体感信息。