Department of Electrical and Electronical Engineering, Public University of Navarra, Pamplona, Spain.
TDN, Orthopedic Surgery and Advanced Rehabilitation Center, Clinical Research Department, Mutilva, Spain.
J Electromyogr Kinesiol. 2022 Oct;66:102681. doi: 10.1016/j.jelekin.2022.102681. Epub 2022 Jul 16.
In the compound muscle action potential (M wave) recorded using the belly-tendon configuration, the contribution of the tendon electrode is assumed to be negligible compared to the belly electrode. We tested this assumption by placing the reference electrode at a distant (contralateral) site, which allowed separate recording of the belly and tendon contributions.
M waves were recorded at multiple selected sites over the right quadriceps heads and lower leg using two different locations for the reference electrode: the ipsilateral (right) and contralateral (left) patellar tendon. The general parameters of the M wave (amplitude, area, duration, latency, and frequency) were measured.
(1) The tendon potential had a small amplitude (<30%) compared to the belly potential; (2) Changing the reference electrode from the ipsilateral to the contralateral patella produced moderate changes in the M wave recorded over the innervation zone, these changes affecting significantly the amplitude of the M-wave second phase (p = 0.006); (3) Using the contralateral reference system allowed recording of short-latency components occurring immediately after the stimulus artefact, which had the same latency and amplitude (p = 0.18 and 0.25, respectively) at all recording sites over the leg.
The potential recorded at the "tendon" site after femoral nerve stimulation is small (compared to the belly potential), but not negligible, and makes a significant contribution to the second phase of belly-tendon M wave. Adopting a distant (contralateral) reference allowed recording of far-field components that may aid in the understanding of the electrical formation of the M wave.
在使用腹部-肌腱配置记录复合肌肉动作电位(M 波)时,假设肌腱电极的贡献相对于腹部电极可以忽略不计。我们通过将参考电极放置在远处(对侧)的位置来检验这一假设,这允许分别记录腹部和肌腱的贡献。
使用两种不同的参考电极位置(同侧(右)和对侧(左)髌腱),在右侧股四头肌头部和小腿的多个选定部位记录 M 波。测量 M 波的一般参数(幅度、面积、持续时间、潜伏期和频率)。
(1)肌腱电位的幅度比腹部电位小(<30%);(2)将参考电极从同侧的髌腱改为对侧的髌腱,会使在神经支配区记录的 M 波发生中等程度的变化,这些变化显著影响 M 波第二相的幅度(p=0.006);(3)使用对侧参考系统可以记录刺激伪迹后立即出现的短潜伏期成分,这些成分在腿部所有记录部位的潜伏期和幅度相同(分别为 p=0.18 和 0.25)。
股神经刺激后在“肌腱”部位记录到的电位较小(与腹部电位相比),但并非可以忽略不计,并且对腹部-肌腱 M 波的第二相有显著贡献。采用远距离(对侧)参考可以记录远场成分,这可能有助于理解 M 波的电形成。