Nakagawa Kento, Fok Kai Lon, Masani Kei
KITE Research Institute, Toronto Rehabilitation Institute - University Health Network, Toronto, Ontario, Canada.
Japan Society for the Promotion of Science, Tokyo, Japan.
Artif Organs. 2023 Mar;47(3):537-546. doi: 10.1111/aor.14445. Epub 2022 Nov 14.
Transcutaneous electrical stimulation on the motor points over muscle belly, i.e., motor point stimulation (MPS), is widely used in clinical settings, however it is not fully understood how MPS recruits motor nerves. Here we investigated the recruitment pattern of the motor nerve and twitch force during MPS and compared to the recruitment during peripheral nerve stimulation (PNS).
Ten healthy individuals participated in this study. Using MPS on the soleus muscle and PNS on the tibial nerve, a single pulse stimulation was applied with various stimulation intensities from subthreshold to the maximum intensity. We measured the evoked potentials in the lower leg muscles and twitch force. Between MPS and PNS, we compared the recruitment curves of M-waves and the dynamics of twitch force such as duration from force onset to peak (time-to-peak).
The maximum M-wave was not different between MPS and PNS in the soleus muscle, while it was much smaller in MPS than in PNS in the other lower leg muscles. This reflected the smaller twitch force of plantarflexion in MPS than PNS. In addition, the slope of the recruitment curve for the soleus M-wave was smaller in MPS than PNS.
Therefore, unlike PNS, MPS can efficiently and selectively recruit motor nerves of the target muscle and gradually increase the recruitment of the motor nerve.
经皮电刺激肌肉肌腹上的运动点,即运动点刺激(MPS),在临床环境中广泛应用,然而MPS如何募集运动神经尚未完全明确。在此,我们研究了MPS期间运动神经的募集模式和抽搐力,并与外周神经刺激(PNS)期间的募集情况进行比较。
10名健康个体参与本研究。对比目鱼肌进行MPS,对胫神经进行PNS,从阈下刺激到最大强度施加不同刺激强度的单脉冲刺激。我们测量小腿肌肉中的诱发电位和抽搐力。在MPS和PNS之间,我们比较了M波的募集曲线以及抽搐力的动态变化,如从力开始到峰值的持续时间(达到峰值时间)。
比目鱼肌中MPS和PNS的最大M波无差异,而在其他小腿肌肉中,MPS的最大M波比PNS小得多。这反映出MPS中跖屈的抽搐力比PNS小。此外,比目鱼肌M波募集曲线的斜率在MPS中比PNS小。
因此,与PNS不同,MPS能够有效且选择性地募集目标肌肉的运动神经,并逐渐增加运动神经的募集。