Faculty of Welfare and Health Science, Oita University, Oita, Japan.
Department of Clinical Laboratory, Junwakai Memorial Hospital, Miyazaki, Japan.
Neuroscience. 2018 Nov 1;391:131-139. doi: 10.1016/j.neuroscience.2018.09.013. Epub 2018 Sep 20.
Motor function can be modulated by transcranial alternating current stimulation (tACS) in alpha, beta, and high-gamma frequencies. However, few studies have investigated tACS-induced behavioral changes in combination with endogenous oscillatory neural activity in detail. Herein, we investigated the effect of tACS on motor learning capacity and endogenous oscillatory neural activity. Fifty-two healthy volunteers were randomly assigned to four stimulation groups (10 Hz, 20 Hz, 70 Hz, or sham) and performed a visually cued button press motor learning task before and after tACS, which was delivered at the left primary motor area. Oscillatory neural activities during the motor learning task were measured using magnetoencephalography (MEG). Following tACS, the capacity for motor learning was significantly increased for 70 Hz tACS compared to sham stimulation. Oscillation analysis revealed a significant increase in beta-band power after 70-Hz tACS but not in the other stimulation groups. Our finding that capacity for motor learning and endogenous oscillatory beta activity were modulated in parallel after 70-Hz tACS suggests that 70-Hz tACS may increase the motor learning capacity by cross-modulating beta oscillatory activity. Because high gamma and beta oscillatory activity have been shown to reflect the activity of excitatory and inhibitory interneuron, our results may derive from the modulation of excitatory and inhibitory interneurons in M1 by 70-Hz tACS.
运动功能可以通过经颅交流电刺激(tACS)在 alpha、beta 和高 gamma 频率下进行调节。然而,很少有研究详细研究 tACS 诱导的行为变化与内源性振荡神经活动的结合。在此,我们研究了 tACS 对运动学习能力和内源性振荡神经活动的影响。52 名健康志愿者被随机分配到四个刺激组(10 Hz、20 Hz、70 Hz 或假刺激),并在 tACS 前后进行视觉提示按钮按压运动学习任务,tACS 施加于左侧初级运动区。使用脑磁图(MEG)测量运动学习任务期间的振荡神经活动。tACS 后,与假刺激相比,70 Hz tACS 使运动学习能力显著提高。振荡分析显示,70 Hz tACS 后 beta 波段功率显著增加,但在其他刺激组中则没有。我们发现,70 Hz tACS 后运动学习能力和内源性 beta 振荡活动平行调节,这表明 70 Hz tACS 可能通过交叉调节 beta 振荡活动来增加运动学习能力。因为高 gamma 和 beta 振荡活动已被证明反映兴奋性和抑制性中间神经元的活动,我们的结果可能源于 M1 中 70 Hz tACS 对兴奋性和抑制性中间神经元的调制。