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在下半身正压跑步机上进行负重跑步时的肌肉激活和估计相对关节力。

Muscle Activation and Estimated Relative Joint Force During Running with Weight Support on a Lower-Body Positive-Pressure Treadmill.

作者信息

Jensen Bente R, Hovgaard-Hansen Line, Cappelen Katrine L

机构信息

Biomechanics and Motor Control Lab, Integrative Physiology, Department of Nutrition, Exercise and Sport, University of Copenhagen, Denmark.

出版信息

J Appl Biomech. 2016 Aug;32(4):335-41. doi: 10.1123/jab.2015-0075. Epub 2016 Mar 8.

Abstract

Running on a lower-body positive-pressure (LBPP) treadmill allows effects of weight support on leg muscle activation to be assessed systematically, and has the potential to facilitate rehabilitation and prevent overloading. The aim was to study the effect of running with weight support on leg muscle activation and to estimate relative knee and ankle joint forces. Runners performed 6-min running sessions at 2.22 m/s and 3.33 m/s, at 100%, 80%, 60%, 40%, and 20% body weight (BW). Surface electromyography, ground reaction force, and running characteristics were measured. Relative knee and ankle joint forces were estimated. Leg muscles responded differently to unweighting during running, reflecting different relative contribution to propulsion and antigravity forces. At 20% BW, knee extensor EMGpeak decreased to 22% at 2.22 m/s and 28% at 3.33 m/s of 100% BW values. Plantar flexors decreased to 52% and 58% at 20% BW, while activity of biceps femoris muscle remained unchanged. Unweighting with LBPP reduced estimated joint force significantly although less than proportional to the degree of weight support (ankle). It was concluded that leg muscle activation adapted to the new biomechanical environment, and the effect of unweighting on estimated knee force was more pronounced than on ankle force.

摘要

在下肢正压(LBPP)跑步机上跑步能够系统地评估体重支撑对腿部肌肉激活的影响,并且具有促进康复和防止负荷过重的潜力。本研究旨在探讨体重支撑跑步对腿部肌肉激活的影响,并估算膝关节和踝关节的相对作用力。跑步者在2.22米/秒和3.33米/秒的速度下,分别以体重的100%、80%、60%、40%和20%进行6分钟的跑步训练。测量了表面肌电图、地面反作用力和跑步特征,并估算了膝关节和踝关节的相对作用力。跑步过程中,腿部肌肉对减轻体重的反应各不相同,这反映了其对推进力和反重力的相对贡献不同。在20%体重支撑时,膝关节伸肌肌电图峰值在2.22米/秒时降至100%体重支撑时的22%,在3.33米/秒时降至28%。足底屈肌在20%体重支撑时降至52%和58%,而股二头肌的活动保持不变。尽管LBPP减轻体重时估计的关节力显著降低,但其降低幅度小于体重支撑程度(踝关节)的比例。研究得出结论,腿部肌肉激活适应了新的生物力学环境,减轻体重对估计膝关节力的影响比对踝关节力的影响更为明显。

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