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首页> 外文期刊>Journal of Biomechanics >Predicting the influence of hip and lumbar flexibility on lifting motions using optimal control
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Predicting the influence of hip and lumbar flexibility on lifting motions using optimal control

机译:用最优控制预测髋关节和腰椎柔韧性对提升运动的影响

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摘要

Computational models of the human body coupled with optimization can be used to predict the influence of variables that cannot be experimentally manipulated. Here, we present a study that predicts the motion of the human body while lifting a box, as a function of flexibility of the hip and lumbar joints in the sagittal plane. We modeled the human body in the sagittal plane with joints actuated by pairs of agonist-antagonist muscle torque generators, and a passive hamstring muscle. The characteristics of a stiff, average and flexible person were represented by co-varying the lumbar range-of-motion, lumbar passive extensor-torque and the hamstring passive muscle-force. We used optimal control to solve for motions that simulated lifting a 10 kg box from a 0.3 m height. The solution minimized the total sum of the normalized squared active and passive muscle torques and the normalized passive hamstring muscle forces, over the duration of the motion. The predicted motion of the average lifter agreed well with experimental data in the literature. The change in model flexibility affected the predicted joint angles, with the stiffer models flexing more at the hip and knee, and less at the lumbar joint, to complete the lift. Stiffer models produced similar passive lumbar torque and higher hamstring muscle force components than the more flexible models. The variation between the motion characteristics of the models suggest that flexibility may play an important role in determining lifting technique. (C) 2018 Elsevier Ltd. All rights reserved.
机译:与优化相结合的人体的计算模型可用于预测无法通过实验操纵的变量的影响。在这里,我们提出了一项研究,该研究在提升盒子时预测人体的运动,作为臀部和腰部接头在矢状平面中的柔韧性的函数。我们将人体建模在矢状平面中,具有通过对激动剂 - 拮抗剂肌肉扭矩发生器和被动腿筋肌肉致动的关节。通过共同改变腰部运动范围,腰部被动延伸扭矩和腿筋被动肌肉力来表示僵硬,平均和灵活的人的特征。我们使用最佳控制来解决模拟从0.3米高的10千克盒子的运动。该溶液最小化了归一化平方的活性和被动肌肉扭矩和归一化的被动腿筋肌力的总和在运动的持续时间内。平均升降机的预测运动与文献中的实验数据很好。模型灵活性的变化影响了预测的关节角度,使更硬的型号在臀部和膝盖处弯曲更多,腰部较少,以完成升力。更硬模型生产了类似的被动腰部扭矩和比更灵活的型号更高的腿筋肌肉力量。模型的运动特性之间的变化表明灵活性可能在确定提升技术方面发挥重要作用。 (c)2018年elestvier有限公司保留所有权利。

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