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Human Gait Analysis Metric for Gait Retraining

机译:人体步态分析公制步态再培训

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The combined gait asymmetry metric (CGAM) provides a method to synthesize human gait motion. The metric is weighted to balance each parameter’s effect by normalizing the data so all parameters are more equally weighted. It is designed to combine spatial, temporal, kinematic, and kinetic gait parameter asymmetries. It can also combine subsets of the different gait parameters to provide a more thorough analysis. The single number quantifying gait could assist robotic rehabilitation methods to optimize the resulting gait patterns. CGAM will help define quantitative thresholds for achievable balanced overall gait asymmetry. The study presented here compares the combined gait parameters with clinical measures such as timed up and go (TUG), six-minute walk test (6MWT), and gait velocity. The comparisons are made on gait data collected on individuals with stroke before and after twelve sessions of rehabilitation. Step length, step time, and swing time showed a strong correlation to CGAM, but the double limb support asymmetry has nearly no correlation with CGAM and ground reaction force asymmetry has a weak correlation. The CGAM scores were moderately correlated with TUG and strongly correlated to 6MWT and gait velocity.
机译:组合的步态不对称度量(CGAM)提供了合成人体步态运动的方法。根据归一化数据,将度量标准加权以平衡每个参数的效果,因此所有参数都更加加权。它旨在将空间,颞,运动和动力学步态参数不对称结合起来。它还可以组合不同步态参数的子集来提供更彻底的分析。量子量量量可以帮助机器人康复方法来优化所产生的步态模式。 CGAM将有助于定义可实现的平衡整体步态不对称的定量阈值。此处提出的研究将组合的步态参数与临床措施(如定时和去),六分钟步行测试(6MWT)和步态速度等临床措施进行比较。在康复之前和之后,在康复之前和之后收集的人群的步态数据进行比较。步长,步进时间和摆动时间显示与CGAM的强烈相关,但双肢支持不对称性与CgAM几乎没有相关性,接地反作用力不对称的相关性较差。 CGAM分数与拖船相当相关,并与6MWT和步态速度强烈相关。

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