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All joint moments significantly contribute to trunk angular acceleration

机译:所有关节力矩都显着促进躯干角加速度

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Computationally advanced biomechanical analyses of gait demonstrate the often counter-intuitive roles of joint moments on various aspects of gait such as propulsion, swing initiation, and balance. Each joint moment can produce linear and angular acceleration of all body segments (including those on which the moment does not directly act) due to the dynamic coupling inherent in the interconnected musculoskeletal system. This study presents quantitative relationships between individual joint moments and trunk control with respect to balance during gait to show that the ankle, knee, and hip joint moments all affect the angular acceleration of the trunk. We show that trunk angular acceleration is affected by all joints in the leg with varying degrees of dependence during the gait cycle. Furthermore, it is shown that inter-planar coupling exists and a two-dimensional analysis of trunk balance neglects important out-of-plane joint moments that affect trunk angular acceleration.
机译:步态的先进计算生物力学分析表明,关节力矩在步态的各个方面(如推进力,挥杆起步和平衡)通常具有违反直觉的作用。由于相互连接的肌肉骨骼系统固有的动态耦合,每个关节力矩都可以对所有身体部分(包括力矩不直接作用于其上的那些部分)产生线性和角加速度。这项研究提出了步态平衡时各个关节力矩与躯干控制之间的定量关系,以表明踝,膝和髋关节力矩都影响躯干的角加速度。我们显示,在步态周期中,躯干角加速度受腿中所有关节的依赖程度不同的影响。此外,它表明存在平面间耦合,并且对躯干平衡的二维分析忽略了影响躯干角加速度的重要的平面外关节力矩。

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