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Muscle contributions to propulsion and braking during walking anc running: Insight from external force perturbations

机译:行走anc跑步过程中肌肉对推进和制动的贡献:来自外力扰动的见解

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摘要

There remains substantial debate as to the specific contributions of individual muscles to center of mass accelerations during walking and running. To gain insight, we altered the demand for muscular propulsion and braking by applying external horizontal impeding and aiding forces near the center of mass as subjects walked and ran on a treadmill. We recorded electromyographic activity of the gluteus maximus (superior and inferior portions), the gluteus medius, biceps femoris, semitendinosus/ membrinosus, vastus medialis, lateral and medial gastrocnemius and soleus. We reasoned that activity in a propulsive muscle would increase with external impeding force and decrease with external aiding force whereas activity in a braking muscle would show the opposite. We found that during walking the gastrocnemius and gluteus maximus provide propulsion while the vasti are central in providing braking. During running, we found that the gluteus maximus, vastus medialis, gastrocnemius and soleus all contribute to propulsion.
机译:关于步行和跑步过程中单个肌肉对质点加速度中心的具体贡献仍存在大量争论。为了获得洞察力,当受试者在跑步机上行走和奔跑时,我们通过在质心附近施加外部水平阻力和辅助力,从而改变了对肌肉推进和制动的需求。我们记录了臀大肌(上部和下部),臀中肌,股二头肌,半腱肌/膜肌,股内侧肌,腓肠肌外侧和内侧和比目鱼肌的肌电活动。我们认为,推进肌肉的活动会随着外部阻碍力的增加而增加,而在外部辅助力的作用下会减少,而制动肌肉的活动则相反。我们发现,在行走过程中腓肠肌和臀大肌提供了推进力,而巨大肌在提供制动方面居于中心。在跑步过程中,我们发现臀大肌,腓肠肌,腓肠肌和比目鱼肌都对推进有贡献。

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