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The effect of perturbing body segment parameters on calculated joint moments and muscle forces during gait

机译:步态期间摄动人体分段参数对计算的关节力矩和肌肉力量的影响

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This study examined the effect of body segment parameter (BSP) perturbations on joint moments calculated using an inverse dynamics procedure and muscle forces calculated using computed muscle control (CMC) during gait. BSP (i.e. segment mass, center of mass location (com) and inertia tensor) of the left thigh, shank and foot of a scaled musculoskeletal model were perturbed. These perturbations started from their nominal value and were adjusted to ±40% in steps of 10%, for both individual as well as combined perturbations in BSP. For all perturbations, an inverse dynamics procedure calculated the ankle, knee and hip moments based on an identical inverse kinematics solution. Furthermore, the effect of applying a residual reduction algorithm (RRA) was investigated. Muscle excitations and resulting muscle forces were calculated using CMC. The results show only a limited effect of an individual parameter perturbation on the calculated moments, where the largest effect is found when perturbing the shank com (MScom,shank, the ratio of absolute difference in torque and relative parameter perturbation, is maximally -7.81Nm for hip flexion moment). The additional influence of perturbing two parameters simultaneously is small (MSmass+com,thigh is maximally 15.2Nm for hip flexion moment). RRA made small changes to the model to increase the dynamic consistency of the simulation (after RRA MScom,shank is maximally 5.01Nm). CMC results show large differences in muscle forces when BSP are perturbed. These result from the underlying forward integration of the dynamic equations.
机译:这项研究检查了步态期间人体分段参数(BSP)摄动对使用逆动力学程序计算的关节力矩和使用计算机控制肌肉(CMC)计算的肌肉力的影响。比例肌肉骨骼模型的左大腿,小腿和脚的BSP(即节段质量,质心位置(com)和惯性张量)受到干扰。这些扰动从其标称值开始,并针对BSP中的单个扰动和组合扰动,以10%的步长调整为±40%。对于所有扰动,逆动力学过程基于相同的逆运动学解计算踝,膝和髋力矩。此外,还研究了应用残差减少算法(RRA)的效果。使用CMC计算肌肉兴奋度和产生的肌肉力量。结果表明,单个参数摄动对计算出的力矩只有有限的影响,其中,当摄动柄com时发现的最大影响(MScom,柄,扭矩绝对差与相对参数摄动的比值最大为-7.81Nm髋关节屈曲时刻)。同时干扰两个参数的附加影响很小(对于髋部屈曲力矩,MSmass + com,thigh最大为15.2Nm)。 RRA对模型进行了很小的更改,以提高模拟的动态一致性(在RRA MScom之后,柄最大为5.01Nm)。 CMC结果显示,当BSP受到干扰时,肌肉力量差异很大。这些来自动态方程的潜在正向积分。

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