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Kinematic and kinetic analysis of knee joint during squatting

机译:蹲入期间膝关节的运动和动力学分析

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摘要

Knee function in squatting is an important consideration for activity of daily living. However, there are only a limited number of studies reporting biomechanics of deep knee flexion beyond 90°. The joint and muscle forces calculated from the data collected from six healthy subjects performing squatting and rising from a deep squat using a force plate, a marker system and EMG. The estimated tibio-femoral joint forces were between 4.7 and 5.6 times body weight in vertical direction and 2.9-3.5 times body weight in horizontal direction. These forces are much larger than the forces during normal walking. A mathematical model shows the external forces acting on the segments of lower limbs are the gravity forces and inertia forces due to mass segments of limb and the reactive forces transmitted from the ground. The ground reaction forces have the enormous effect on the leg during stance phase of walking whereas the gravity forces and the inertia forces are predominantly responsible for the forces at joints during swing phase of walking. The moment developed by the external forces at the respective joint is counterbalanced by the moment developed by the contraction of muscle forces about the joint to keep the joint in dynamic equilibrium.
机译:蹲缝的膝关节函数是日常生活活动的重要考虑因素。然而,只有有限数量的研究报告了超过90°的深膝弯曲的生物力学。根据从六个健康受试者收集的数据计算的关节和肌肉力,使用力板,标记系统和EMG从深蹲下进行蹲下和上升。估计的胫骨关节力在垂直方向上的4.7%和5.6倍之间,水平方向上的2.9-3.5倍体重。在正常行走期间,这些力量远大于力。数学模型表明,由于肢体的质量区段和从地面传递的反应力,其作用在下肢区段上的外力是重力力和惯性力。地面反作用力在步道的立场相位期间对腿部的巨大作用,而重力力和惯性力主要负责在行走的摆动阶段的关节中的力量。由各个接合处的外力开发的瞬间通过肌肉力的收缩围绕接头的收缩来保持关节在动态均衡中的瞬间进行平衡。

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