Kunugi Shun, Holobar Aleš, Kodera Tsutomu, Toyoda Heishiro, Watanabe Kohei
Laboratory of Neuromuscular Biomechanics, School of Health and Sport Science, Chukyo University, 101 Tokodachi, Kaizu-cho, Toyota-shi, Aichi 470-0393, Japan.
Faculty of Electrical Engineering and Computer Science, University of Maribor, Koroška cesta 46, 2000 Maribor, Slovenia.
J Electromyogr Kinesiol. 2022 Dec;67:102720. doi: 10.1016/j.jelekin.2022.102720. Epub 2022 Oct 25.
The ankle flexor and extensor muscles are essential for pedal movements associated with car driving. Neuromuscular activation of lower leg muscles is influenced by the posture during a given task, such as the flexed knee joint angle during car driving. This study aimed to investigate the influence of flexion of the knee joint on recruitment threshold-dependent motor unit activity in lower leg muscles during isometric contraction. Twenty healthy participants performed plantar flexor and dorsiflexor isometric ramp contractions at 30 % of the maximal voluntary contraction (MVC) with extended (0°) and flexed (130°) knee joint angles. High-density surface electromyograms were recorded from medial gastrocnemius (MG), soleus (SOL), and tibialis anterior (TA) muscles and decomposed to extract individual motor units. The torque-dependent change (Δpps /Δ%MVC) of the motor unit activity of MG (recruited at 15 %MVC) and SOL (recruited at 5 %MVC) muscles was higher with a flexed compared with an extended knee joint (p < 0.05). The torque-dependent change of TA MU did not different between the knee joint angles. The motor units within certain limited recruitment thresholds recruited to exert plantar flexion torque can be excited to compensate for the loss of MG muscle torque output with a flexed knee joint.
踝关节屈伸肌对于与汽车驾驶相关的踏板运动至关重要。小腿肌肉的神经肌肉激活受特定任务期间的姿势影响,例如汽车驾驶时膝关节的屈曲角度。本研究旨在调查膝关节屈曲对等长收缩期间小腿肌肉中募集阈值依赖性运动单位活动的影响。20名健康参与者在膝关节伸展(0°)和屈曲(130°)角度下,以最大自主收缩(MVC)的30%进行跖屈肌和背屈肌等长斜坡收缩。从内侧腓肠肌(MG)、比目鱼肌(SOL)和胫骨前肌(TA)肌肉记录高密度表面肌电图,并进行分解以提取单个运动单位。与伸展膝关节相比,屈曲膝关节时MG(在15%MVC时募集)和SOL(在5%MVC时募集)肌肉运动单位活动的扭矩依赖性变化(Δpps /Δ%MVC)更高(p < 0.05)。TA运动单位的扭矩依赖性变化在膝关节角度之间没有差异。在一定有限募集阈值内被募集以施加跖屈扭矩的运动单位可以被激发,以补偿膝关节屈曲时MG肌肉扭矩输出的损失。