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Gait variability and stability measures: Minimum number of strides and within-session reliability

机译:步态可变性和稳定性的度量:最小步幅和会话中的可靠性

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Background: Several methods are proposed in the literature for the quantification of gait variability/ stability from trunk accelerations. Since outputs can be influenced by implementation differences, reliability assessment and standardization of implementation parameters are still an issue. The aim of this study is to assess the minimum number of required strides and the within-session reliability of 11 variability/stability measures.Method: Ten healthy participants walked in a straight line at self-selected speed wearing two synchronized tri-axial Inertial Measurement Units. Five variability measures were calculated based on stride times namely Standard deviation, Coefficient of variation, Inconsistency of variance, Nonstationary index and Poincare plot. Six stability measures were calculated based on trunk accelerations namely Maximum Floquet multipliers, Short term/long term Lyapunov exponents, Recurrence quantification analysis, Multiscale entropy, Harmonic ratio and Index of harmonicity. The required minimum number of strides and the within-session reliability for each measure were obtained based on the interquartile range/mean ratio. Measures were classified in five categories (namely excellent, good, average, poor, and very poor) based on their reliability.Results: The number of strides required to obtain a reliable measure was generally larger than those conventionally used. Variability measures showed average to poor reliability, while stability measures ranged from excellent to very poor reliability.Conclusion: Recurrence quantification analysis and multiscale entropy of trunk accelerations showed excellent reliability and a reasonable number of required strides. Based on these results, these measures should be taken into consideration in the assessment of fall risk.
机译:背景:文献中提出了几种方法来量化躯干加速度的步态变异性/稳定性。由于输出会受到实施差异的影响,因此可靠性评估和实施参数的标准化仍然是一个问题。这项研究的目的是评估所需的最小步幅和11种变异性/稳定性测度的会话内可靠性。方法:十名健康参与者以自我选择的速度沿着直线行走,并穿着两个同步的三轴惯性测量单位。根据跨步时间计算了五个变异性度量,即标准差,变异系数,变异不一致,非平稳指数和庞加莱图。根据躯干加速度计算了六个稳定性测度,即最大浮球乘数,短期/长期Lyapunov指数,递归量化分析,多尺度熵,谐波比和谐波指数。根据四分位间距/均值比,获得了每个步骤所需的最小步幅和会话内可靠性。根据其可靠性将措施分为五类(即优,良,中,差和极差)。结果:获得可靠措施所需的步幅通常大于常规使用的步幅。变异性测度显示出中等至差的可靠性,而稳定性测度则从极差到极差。结论:循环量化分析和躯干加速度的多尺度熵显示出极佳的可​​靠性和合理的步幅。根据这些结果,在评估跌倒风险时应考虑这些措施。

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