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Development and validation of a 3D kinematic-based method for determining gait events during overground walking

机译:基于3D运动的基于3D运动方法的开发与验证在地下行走期间确定步态事件

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A new signal processing algorithm is developed for quantifying heel strike (HS) and toe-off (TO) event times solely from measured heel and toe coordinates during overground walking. It is based on a rough estimation of relevant local 3D position signals. An original piecewise linear fitting method is applied to these local signals to accurately identify HS and TO times without the need of using arbitrary experimental coefficients. We validated the proposed method with nine healthy subjects and a total of 322 trials. The extracted temporal gait events were compared to reference data obtained from a force plate. HS and TO times were identified with a temporal accuracy ± precision of 0.3 ms ± 7.1 ms, and -2.8 ms ± 7.2 ms in comparison with reference data defined with a force threshold of 10 N. This algorithm improves the accuracy of the HS and TO detection. Furthermore, it can be used to perform stride-by-stride analysis during overground walking with only recorded heel and toe coordinates.
机译:开发了一种新的信号处理算法,用于仅在地下行走期间仅从测量的鞋跟和脚趾坐标来定量高跟击击(HS)和脚趾(至)事件时间。它基于相关的本地3D位置信号的粗略估计。原始分段线性拟合方法应用于这些局部信号,以准确地识别HS和时间而不需要使用任意实验系数。我们验证了九个健康科目的提议方法,共有322项试验。将提取的时间步态进程与从力板获得的参考数据进行比较。 HS和时间以0.3 ms±7.1ms的时间精度±精度识别,与用5 n的力阈值定义的参考数据相比,与-2.8ms±7.2 ms相比。该算法提高了HS和To的准确性检测。此外,它可用于在高跟鞋和脚趾坐标时进行逐步分析。

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