A Multi-metric Modular Framework for Human-like Gait Analysis Based on a Recorded Set of Variable Gait Patterns

Stephan Kapteijn, Wansoo Kim, L. Marchal-Crespo, L. Peternel
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Abstract

Walking is an essential part of almost all activities of daily living. We use different gait patterns in different situations, e.g., moving around the house, performing various sports, or when compensating for an injury. However, how humans perform this gait tailoring remains a partially unknown process. To this end, the influence of various performance metrics on the optimality and diversity of gait patterns can provide us with more insight. To analyse gait in terms of pattern diversity and performance metrics related to physical aspects, such as joint torque, fatigue, and manipulability, we propose a multi-metric gait analysis framework that simultaneously accounts for these parameters. We used a recorded set of versatile gait patterns that are already dynamically stable and physiologically feasible. To that end, 45 gait variations-varying in stride length, step height, and walking speed-were recorded in a motion capture experiment. Results of analysis using the recorded dataset are presented for a baseline case (with all optimisation weights set to one), which serves as the first step for future research, in particular giving insights into specific aspects of the gait, e.g., joint loading, long-term performance, and capacity to sustain ground reaction forces.
基于可变步态模式记录集的类人步态分析多度量模块化框架
步行是几乎所有日常生活活动的重要组成部分。我们在不同的情况下使用不同的步态模式,例如,在房子里走动,进行各种运动,或者在补偿受伤时。然而,人类如何执行这种步态定制仍然是一个部分未知的过程。为此,各种性能指标对步态模式的最优性和多样性的影响可以为我们提供更多的见解。为了分析步态的模式多样性和与物理方面相关的性能指标,如关节扭矩、疲劳和可操纵性,我们提出了一个同时考虑这些参数的多度量步态分析框架。我们使用了一组记录的多用途步态模式,这些模式已经在动态稳定和生理上可行。为此,在动作捕捉实验中记录了45种步态变化——步幅长度、步高和行走速度的变化。使用记录数据集的分析结果为基线案例(所有优化权重设置为1)提供,这是未来研究的第一步,特别是对步态的特定方面提供见解,例如关节负载,长期性能和维持地面反作用力的能力。
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