Takahashi Yoko, Kawakami Michiyuki, Yamaguchi Tomofumi, Idogawa Yusuke, Tanabe Shigeo, Kondo Kunitsugu, Liu Meigen
Department of Rehabilitation Medicine, Keio University School of Medicine, Tokyo, Japan.
Tokyo Bay Rehabilitation Hospital, Chiba, Japan.
Front Neurosci. 2019 Feb 21;13:149. doi: 10.3389/fnins.2019.00149. eCollection 2019.
Motor imagery (MI) combined with electrical stimulation (ES) enhances upper-limb corticospinal excitability. However, its after-effects on both lower limb corticospinal excitability and spinal reciprocal inhibition remain unknown. We aimed to investigate the effects of MI combined with peripheral nerve ES (MI + ES) on the plasticity of lower limb corticospinal excitability and spinal reciprocal inhibition. Seventeen healthy individuals performed the following three tasks on different days, in a random order: (1) MI alone; (2) ES alone; and (3) MI + ES. The MI task consisted of repetitive right ankle dorsiflexion for 20 min. ES was percutaneously applied to the common peroneal nerve at a frequency of 100 Hz and intensity of 120% of the sensory threshold of the tibialis anterior (TA) muscle. We examined changes in motor-evoked potential (MEP) of the TA (task-related muscle) and soleus muscle (SOL; task-unrelated muscle). We also examined disynaptic reciprocal inhibition before, immediately after, and 10, 20, and 30 min after the task. MI + ES significantly increased TA MEPs immediately and 10 min after the task compared with baseline, but did not change the task-unrelated muscle (SOL) MEPs. MI + ES resulted in a significant increase in the magnitude of reciprocal inhibition immediately and 10 min after the task compared with baseline. MI and ES alone did not affect TA MEPs or reciprocal inhibition. MI combined with ES is effective in inducing plastic changes in lower limb corticospinal excitability and reciprocal Ia inhibition.
运动想象(MI)结合电刺激(ES)可增强上肢皮质脊髓兴奋性。然而,其对下肢皮质脊髓兴奋性和脊髓交互抑制的后续影响尚不清楚。我们旨在研究MI结合周围神经ES(MI + ES)对下肢皮质脊髓兴奋性可塑性和脊髓交互抑制的影响。17名健康个体在不同日期以随机顺序进行以下三项任务:(1)单独进行MI;(2)单独进行ES;(3)MI + ES。MI任务包括重复进行20分钟的右踝关节背屈。以100 Hz的频率和胫前肌(TA)感觉阈值的120%的强度经皮将ES施加于腓总神经。我们检查了TA(任务相关肌肉)和比目鱼肌(SOL;任务无关肌肉)的运动诱发电位(MEP)变化。我们还在任务前、任务后立即以及任务后10、20和30分钟检查了双突触交互抑制。与基线相比,MI + ES在任务后立即和10分钟时显著增加了TA的MEP,但未改变任务无关肌肉(SOL)的MEP。与基线相比,MI + ES在任务后立即和10分钟时导致交互抑制幅度显著增加。单独的MI和ES对TA的MEP或交互抑制没有影响。MI结合ES可有效诱导下肢皮质脊髓兴奋性和Ia交互抑制的可塑性变化。