Saito Akira, Ando Ryosuke, Akima Hiroshi
Graduate School of Education and Human Development, Nagoya University, Nagoya, Aichi, Japan.
Japan Society for the Promotion of Science, Chiyoda, Tokyo, Japan.
Exp Brain Res. 2016 Jan;234(1):209-17. doi: 10.1007/s00221-015-4447-x. Epub 2015 Sep 29.
The quadriceps femoris (QF) muscle group plays an essential role in human movement, such as standing, walking and running. The ability to maintain a steady force during physical activity of the human lower limb is important for mobility, postural control and balance. Although prolonged mechanical vibration of the muscle-tendon unit can moderate the efficacy of synaptic input from Ia afferent onto the α-motor neuron pathway, the effect of prolonged tendon vibration on fluctuations of knee extensor force has received little attention. The purpose of the present study was to examine the effects of prolonged patellar tendon vibration on the force steadiness of the QF muscle. Nine healthy men performed a submaximal force-matching task involving isometric knee extension before and after patellar tendon vibration or quiet seated rest (n = 7, control condition) for 30 min. The target force was 2.5, 10 and 30 % of maximal voluntary contraction (MVC). Surface electromyography (EMG) of the four QF synergists was recorded and normalized to EMG amplitude during the MVC. The knee extension force and the EMG amplitude of vastus medialis during the MVC were significantly reduced after the vibration, but did not significantly decrease in the control condition. Fluctuations of force and normalized EMG of individual QF muscles at each submaximal force level did not significantly change after the vibration. We conclude that prolonged patellar tendon vibration does not influence the force steadiness of the QF muscle during an isometric force-matching task.
股四头肌(QF)肌群在人类运动中起着至关重要的作用,如站立、行走和跑步。在人类下肢的体力活动过程中保持稳定力量的能力对于活动能力、姿势控制和平衡非常重要。尽管肌腱单元的长时间机械振动可调节Ia传入神经对α运动神经元通路的突触输入效能,但长时间肌腱振动对膝伸肌力量波动的影响却很少受到关注。本研究的目的是检验髌腱长时间振动对QF肌肉力量稳定性的影响。九名健康男性在髌腱振动或安静坐姿休息(n = 7,对照条件)30分钟前后进行了一项涉及等长膝关节伸展的次最大力量匹配任务。目标力量为最大自主收缩(MVC)的2.5%、10%和30%。记录了四个QF协同肌的表面肌电图(EMG),并将其归一化为MVC期间的EMG幅度。振动后,MVC期间的膝关节伸展力和股内侧肌的EMG幅度显著降低,但在对照条件下没有显著下降。在每个次最大力量水平下,单个QF肌肉的力量波动和归一化EMG在振动后没有显著变化。我们得出结论,在等长力量匹配任务期间,髌腱长时间振动不会影响QF肌肉的力量稳定性。