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首页> 外文期刊>Journal of Biomechanics >Sensitivity of dynamic simulations of gait and dynamometer experiments to hill muscle model parameters of knee flexors and extensors.
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Sensitivity of dynamic simulations of gait and dynamometer experiments to hill muscle model parameters of knee flexors and extensors.

机译:步态和测力实验的动态模拟对膝盖屈伸肌的山丘肌肉模型参数的敏感性。

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We assessed and compared sensitivities of dynamic simulations to musculotendon (MT) parameters for gait and dynamometer experiments. Our aim with this comparison was to investigate whether dynamometer experiments could provide information about MT-parameters that are important to reliably study MT-function during gait. This would mean that dynamometer experiments could be used to estimate these parameters. Muscle contribution to the joint torque (MT-torque) rather than relative MT-force primarily affects the resulting gait pattern and torque measured by the dynamometer. In contrast to recent studies, therefore, we assessed the sensitivity of the MT-torque, rather than the sensitivity of the relative MT-force. Based on sensitivity of the MT-torque to a parameter perturbation, MT-parameters of the knee flexors and extensors were classified in three categories: low, medium, and high. For gait, classification was based on the average sensitivity during a gait cycle. For isometric and isokinetic dynamometer experiments, classification was based on the highest sensitivity found in the experiments. The calculated muscle contributions to the knee torque during gait and dynamometer experiments had a high sensitivity to only a limited number of MT-parameters of the knee flexors and extensors, suggesting that not all MT-parameters need to be estimated. In general, the highest sensitivity was found for tendon slack length. However, for some muscles the sensitivity to the optimal fibre length or the maximal isometric muscle force was also high or medium. The classification of the individual MT-parameters for gait and dynamometer experiments was largely similar. We therefore conclude that dynamometer experiments provide information about MT-parameters important to reliably study MT-function during gait, so that subject-specific estimates of MT-parameters could be made based on dynamometer experiments.
机译:我们评估并比较了动态模拟对步态和测力计实验中肌腱(MT)参数的敏感性。我们进行此比较的目的是调查测功机实验是否可以提供有关MT参数的信息,这些信息对于可靠地研究步态中的MT功能很重要。这意味着测功机实验可用于估计这些参数。肌肉对关节扭矩(MT扭矩)的贡献而不是相对的MT力主要影响最终的步态模式和测功机测量的扭矩。因此,与最近的研究相比,我们评估了MT扭矩的灵敏度,而不是相对MT力的灵敏度。根据MT扭矩对参数摄动的敏感性,将膝部屈肌和伸肌的MT参数分为三类:低,中和高。对于步态,分类基于步态周期中的平均灵敏度。对于等距和等速测功机实验,分类是基于实验中发现的最高灵敏度。在步态和测力实验中,计算出的肌肉对膝部扭矩的贡献仅对有限数量的膝部屈肌和伸肌MT参数具有很高的敏感性,这表明并非所有的MT参数都需要估算。通常,发现肌腱松弛长度的敏感性最高。但是,对于某些肌肉,对最佳纤维长度或最大等距肌肉力量的敏感性也很高或中等。用于步态和测力计实验的各个MT参数的分类在很大程度上相似。因此,我们得出的结论是,测功器实验提供了有关MT参数的信息,这些信息对于可靠地研究步态中的MT功能非常重要,因此可以根据测功器实验对受试者的MT参数进行特定估计。

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