School of Kinesiology, Faculty of Health Sciences, Western University, London, Canada.
Department of Anatomy and Cell Biology, Schulich School of Medicine and Dentistry, Western University, London, Canada.
Exp Brain Res. 2021 Sep;239(9):2755-2766. doi: 10.1007/s00221-021-06168-8. Epub 2021 Jul 8.
This study explored the relationship between single motor unit (MU) firing rates (FRs) and limb movement velocity during voluntary shortening contractions when accounting for the effects of time course variability between different kinematic comparisons. Single MU trains recorded by intramuscular electromyography in agonist muscles of the anconeus (n = 15 participants) and lateral head of the triceps brachii (n = 6) were measured during each voluntary shortening contraction. Elbow extension movements consisted of a targeted velocity occurring along the sagittal plane at 25, 50, 75 and 100% of maximum velocity. To account for the effect of differences in contraction time course between parameters, each MU potential was time locked throughout the shortening muscle contraction and linked with separated kinematic parameters of the elbow joint. Across targeted movement velocities, instantaneous FRs were significantly correlated with elbow extension rate of torque development (r = 0.45) and torque (r = 0.40), but FRs were not correlated with velocity (r = 0.03, p = n.s.). Instead, FRs had a weak indirect relationship with limb movement velocity and position assessed through multiple correlation of the stepwise kinematic progression. Results show that voluntary descending synaptic inputs correspond to a more direct relationship between agonist muscle FRs and torque during shortening contractions, but not velocity. Instead, FRs were indirectly correlated to preparing the magnitude of imminent movement velocity of the lagging limb through torque.
本研究探讨了在考虑不同运动学比较之间时程变异性的影响的情况下,在自愿缩短收缩期间,单个运动单位 (MU) 放电率 (FR) 与肢体运动速度之间的关系。在每个自愿缩短收缩期间,通过肱二头肌外侧头和肘肌的肌内肌电图记录了单个 MU 训练。肘部伸展运动由沿矢状面以 25、50、75 和 100%最大速度发生的目标速度组成。为了考虑收缩时程参数之间差异的影响,将每个 MU 潜力在整个缩短肌肉收缩过程中进行时间锁定,并与肘部关节的分离运动学参数相关联。在目标运动速度下,瞬时 FR 与肘部伸展转矩生成率 (r=0.45) 和转矩 (r=0.40) 显著相关,但 FR 与速度 (r=0.03,p=n.s.) 不相关。相反,通过逐步运动学进展的多元相关,FR 与肢体运动速度和位置之间存在较弱的间接关系。结果表明,在缩短收缩期间,自愿下行突触输入与激动肌 FR 与转矩之间存在更直接的关系,而与速度无关。相反,FR 通过转矩与滞后肢体即将发生的运动速度的大小间接相关。