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基于物理的接受运动合理动力学模拟的准则。

Physics-Based Guidelines for Accepting Reasonable Dynamic Simulations of Movement.

出版信息

IEEE Trans Biomed Eng. 2022 Mar;69(3):1194-1201. doi: 10.1109/TBME.2021.3119773. Epub 2022 Feb 18.

Abstract

OBJECTIVE

During dynamic simulations, residuals are nonphysical generalized forces/moments that dynamically balance external and inertial forces/moments, accounting for data processing and modelling errors. Hicks et al. (2015) made the original residual threshold recommendations for an acceptable simulation, but these thresholds are not based on the dynamic, physics-based movement characteristics. In this study, we present three new, physics-based guidelines for accepting dynamic simulations of movement using zero moment point computations and thresholds for forces, center of pressure, and free moment.

METHODS

We formulate new guidelines and evaluate them alongside the original 2015 recommendations using two movements: single-leg jump-landing (SLJL) and walking gait. We also present a MATLAB function for users to test if their simulations meet these guidelines.

RESULTS

We found that on average, only 4.3% (SLJL) and 8.2% (walking gait) of the original 2015 residuals volume met all the new physics-based guidelines. The free-moment guideline was the most restrictive for reasonable simulations, especially for high-velocity movements at times with lower vertical ground reaction forces. Additionally, some of the new recommended residuals volume fell outside of the original 2015 recommendations. Moreover, accepting reasonable simulations using different thresholds leads to different joint torques as high as 24 Nm (SLJL) and 8.2 Nm (walking gait).

CONCLUSION

The physics-based guidelines are overall more restrictive than the original 2015 recommendations and elicit different simulation kinetics.

SIGNIFICANCE

Using different guidelines may lead to different conclusions and clinical interpretations. We advocate for the physics-based guidelines as they are built upon the dynamic, physics-based characteristics of the movement.

摘要

目的

在动态模拟中,残差是非物理的广义力/力矩,它们动态平衡外部和惯性力/力矩,以弥补数据处理和建模误差。Hicks 等人(2015 年)提出了原始的残差阈值建议,以接受可接受的模拟,但这些阈值不是基于动态、基于物理的运动特征。在这项研究中,我们提出了三个新的基于物理的准则,用于使用零力矩点计算和力、压力中心和自由力矩的阈值接受运动的动态模拟。

方法

我们制定了新的准则,并使用两种运动(单腿跳跃着陆(SLJL)和步行步态)对其进行评估,同时评估了 2015 年的原始建议。我们还提供了一个 MATLAB 函数,供用户测试他们的模拟是否符合这些准则。

结果

我们发现,平均而言,只有 4.3%(SLJL)和 8.2%(步行步态)的原始 2015 年残差体积符合所有新的基于物理的准则。对于合理的模拟,自由力矩准则是最严格的,尤其是在垂直地面反作用力较低的高速运动时。此外,一些新推荐的残差体积落在原始 2015 年建议之外。此外,使用不同的阈值接受合理的模拟会导致高达 24 Nm(SLJL)和 8.2 Nm(步行步态)的不同关节扭矩。

结论

基于物理的准则总体上比原始的 2015 年建议更为严格,并产生了不同的模拟动力学。

意义

使用不同的准则可能会导致不同的结论和临床解释。我们主张使用基于物理的准则,因为它们是基于运动的动态、基于物理的特征构建的。

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