Washabaugh Edward P, Santos Luciana, Claflin Edward S, Krishnan Chandramouli
Department of Physical Medicine and Rehabilitation, University of Michigan Medical School, Ann Arbor, MI, USA; Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI, USA.
Department of Physical Medicine and Rehabilitation, University of Michigan Medical School, Ann Arbor, MI, USA.
Neuroscience. 2016 Aug 4;329:93-7. doi: 10.1016/j.neuroscience.2016.04.037. Epub 2016 Apr 30.
Anodal transcranial direct current stimulation (tDCS) is known to increase the force-generating capacity of the skeletal muscles. However, when tDCS is concurrently combined with a motor task, interference may occur that hinders tDCS effects. Here, we tested the interaction and time course of tDCS effects on force production when paired with a low-level force-matching task. Twenty-two subjects were randomized into two groups: tDCS-Matching and tDCS-Resting. Each group received tDCS and a sham stimulation, separated by one week. Maximal knee extensor and flexor torques were measured before and up to twenty-five minutes following the stimulation. The tDCS-Matching group produced greater knee extension torques relative to sham when compared with the tDCS-Resting group. There was no significant effect for knee flexion. This suggests that interference does not occur for force production tasks when tDCS is combined with a motor task. Rather, the task appears to aid and isolate the effects to the muscle groups involved in the task.
已知阳极经颅直流电刺激(tDCS)可增强骨骼肌的力量生成能力。然而,当tDCS与运动任务同时进行时,可能会出现干扰,从而阻碍tDCS的效果。在此,我们测试了tDCS与低水平力量匹配任务配对时对力量产生的影响的相互作用和时间进程。22名受试者被随机分为两组:tDCS-匹配组和tDCS-休息组。每组接受tDCS和假刺激,间隔一周。在刺激前及刺激后长达25分钟内测量最大膝关节伸肌和屈肌扭矩。与tDCS-休息组相比,tDCS-匹配组在与假刺激相比时产生了更大的膝关节伸展扭矩。膝关节屈曲没有显著影响。这表明,当tDCS与运动任务相结合时,力量产生任务不会出现干扰。相反,该任务似乎有助于并将效果隔离到任务中涉及的肌肉群。