Ataoglu Esra Erkoc, Caglayan Hale Batur, Cengiz Bülent
Department of Neurology, Zekai Tahir Burak Women's Health Education and Research Hospital, Ankara, Turkey.
Department of Neurology, Gazi University Faculty of Medicine, Besevler, 06500, Ankara, Turkey.
Exp Brain Res. 2017 Sep;235(9):2653-2659. doi: 10.1007/s00221-017-5001-9. Epub 2017 Jun 2.
Motor cortex activity level is a critical part of the effect of transcranial direct current stimulation (tDCS) on corticomotor excitability. Based on homeostatic plasticity, the state of the stimulated cortical area influences the direction of neuroplastic changes induced by stimuli. Owing to homeostatic plasticity, cathodal tDCS (c-tDCS) would likely have a pronounced inhibitory effect on corticomotor excitability during a motor task, compared with the resting state. To test this hypothesis, we detected motor evoked potential (MEP) amplitude changes before and during c-tDCS with voluntary movement. Twelve healthy right-handed volunteers (9 males, 27-48 years) were enrolled in the study. Subjects performed little finger abduction motor task. Passive (APB) and active (ADM) muscles were studied. MEP amplitudes were measured during resting (baseline) and movement stages, and subsequently with the contralateral M1 modulated by c-tDCS. c-tDCS caused reduced baseline MEP amplitude in the ADM (p < 0.05) and APB (p < 0.001) muscles. Sham stimulation had no effect on the baseline MEP amplitudes. MEP amplitude ratio (MEP amplitude /baseline MEP amplitude) was higher during c-tDCS than before c-tDCS (p < 0.01). Our results suggested that during voluntary contraction, c-tDCS has an opposite effect on corticospinal excitability compared with resting state modulation effect. This contrast effect could be related to modulation of movement preparation and execution.
运动皮层活动水平是经颅直流电刺激(tDCS)对皮质运动兴奋性产生影响的关键部分。基于稳态可塑性,受刺激皮层区域的状态会影响刺激所诱导的神经可塑性变化的方向。由于稳态可塑性,与静息状态相比,阴极tDCS(c-tDCS)在运动任务期间可能会对皮质运动兴奋性产生显著的抑制作用。为了验证这一假设,我们检测了在c-tDCS期间及之前进行自主运动时运动诱发电位(MEP)幅度的变化。12名健康的右利手志愿者(9名男性,年龄27 - 48岁)参与了该研究。受试者进行小指外展运动任务。研究了被动(APB)和主动(ADM)肌肉。在静息(基线)和运动阶段测量MEP幅度,随后测量由c-tDCS调节的对侧M1的MEP幅度。c-tDCS导致ADM(p < 0.05)和APB(p < 0.001)肌肉的基线MEP幅度降低。假刺激对基线MEP幅度没有影响。c-tDCS期间的MEP幅度比(MEP幅度/基线MEP幅度)高于c-tDCS之前(p < 0.01)。我们的结果表明,在自主收缩期间,与静息状态调节效应相比,c-tDCS对皮质脊髓兴奋性具有相反的作用。这种对比效应可能与运动准备和执行的调节有关。