Institute of Sport Sciences, Faculty of Biology and Medicine, University of Lausanne, Quartier UNIL-Centre, Building Synathlon, 1015, Lausanne, VD, Switzerland.
Centre for Exercise and Sports Science Research (CESSR), School of Medical and Health Sciences, Edith Cowan University, Joondalup, WA, Australia.
Sci Rep. 2021 Mar 18;11(1):6399. doi: 10.1038/s41598-021-85645-0.
The effectiveness of neuromuscular electrical stimulation (NMES) for rehabilitation is proportional to the evoked torque. The progressive increase in torque (extra torque) that may develop in response to low intensity wide-pulse high-frequency (WPHF) NMES holds great promise for rehabilitation as it overcomes the main limitation of NMES, namely discomfort. WPHF NMES extra torque is thought to result from reflexively recruited motor units at the spinal level. However, whether WPHF NMES evoked force can be modulated is unknown. Therefore, we examined the effect of two interventions known to change the state of spinal circuitry in opposite ways on evoked torque and motor unit recruitment by WPHF NMES. The interventions were high-frequency transcutaneous electrical nerve stimulation (TENS) and anodal transcutaneous spinal direct current stimulation (tsDCS). We show that TENS performed before a bout of WPHF NMES results in lower evoked torque (median change in torque time-integral: - 56%) indicating that WPHF NMES-evoked torque might be modulated. In contrast, the anodal tsDCS protocol used had no effect on any measured parameter. Our results demonstrate that WPHF NMES extra torque can be modulated and although the TENS intervention blunted extra torque production, the finding that central contribution to WPHF NMES-evoked torques can be modulated opens new avenues for designing interventions to enhance WPHF NMES.
神经肌肉电刺激 (NMES) 的康复效果与诱发扭矩成正比。低强度宽脉冲高频 (WPHF) NMES 可能会产生的扭矩逐渐增加(额外扭矩),这为康复带来了很大的希望,因为它克服了 NMES 的主要限制,即不适。人们认为 WPHF NMES 额外扭矩是由脊髓水平反射募集的运动单位产生的。然而,WPHF NMES 诱发的力是否可以调节尚不清楚。因此,我们研究了两种已知以相反方式改变脊髓回路状态的干预措施对 WPHF NMES 诱发扭矩和运动单位募集的影响。这些干预措施是高频经皮神经电刺激 (TENS) 和经皮脊髓直流电刺激 (tsDCS)。我们表明,在 WPHF NMES 发作前进行 TENS 会导致诱发扭矩降低(扭矩时间积分的中位数变化:-56%),这表明 WPHF NMES 诱发的扭矩可能是可调节的。相比之下,使用的阳极 tsDCS 方案对任何测量参数均无影响。我们的结果表明,WPHF NMES 额外扭矩可以调节,尽管 TENS 干预削弱了额外扭矩的产生,但中央对 WPHF NMES 诱发扭矩的贡献可以调节的发现为设计增强 WPHF NMES 的干预措施开辟了新途径。