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非线性动力学表明衰老会影响步态过程中的变异性。

Nonlinear dynamics indicates aging affects variability during gait.

作者信息

Buzzi Ugo H, Stergiou Nicholas, Kurz Max J, Hageman Patricia A, Heidel Jack

机构信息

HPER Biomechanics Lab, University of Nebraska at Omaha, 6001 Dodge Street, Omaha, NE 68182-0216, USA.

出版信息

Clin Biomech (Bristol). 2003 Jun;18(5):435-43. doi: 10.1016/s0268-0033(03)00029-9.

Abstract

OBJECTIVE

To investigate the nature of variability present in time series generated from gait parameters of two different age groups via a nonlinear analysis.

DESIGN

Measures of nonlinear dynamics were used to compare kinematic parameters between elderly and young females.

BACKGROUND

Aging may lead to changes in motor variability during walking, which may explain the large incidence of falls in the elderly.

METHODS

Twenty females, 10 younger (20-37 yr) and 10 older (71-79 yr) walked on a treadmill for 30 consecutive gait cycles. Time series from selected kinematic parameters of the right lower extremity were analyzed using nonlinear dynamics. The largest Lyapunov exponent and the correlation dimension of all time series, and the largest Lyapunov exponent of the original time series surrogated were calculated. Standard deviations and coefficient of variations were also calculated for selected discrete points from each gait cycle. Independent t-tests were used for statistical comparisons.

RESULTS

The Lyapunov exponents were found to be significantly different from their surrogate counterparts. This indicates that the fluctuations observed in the time series may reflect deterministic processes by the neuromuscular system. The elderly exhibited significantly larger Lyapunov exponents and correlation dimensions for all parameters evaluated indicating local instability. The linear measures indicated that the elderly demonstrated significantly higher variability.

CONCLUSIONS

The nonlinear analysis revealed that fluctuations in the time series of certain gait parameters are not random but display a deterministic behavior. This behavior may degrade with physiologic aging resulting in local instability.

RELEVANCE

Elderly show increased local instability or inability to compensate to the natural stride-to-stride variations present during locomotion. We hypothesized that this may be the one of the reasons for the increases in falling due to aging. Future efforts should attempt to evaluate this hypothesis by making comparisons to pathological subjects (i.e. elderly fallers), and examine the sensitivity and specificity of the nonlinear methods used in this study to aid clinical assessment.

摘要

目的

通过非线性分析研究两个不同年龄组步态参数生成的时间序列中存在的变异性本质。

设计

使用非线性动力学测量方法比较老年女性和年轻女性之间的运动学参数。

背景

衰老可能导致行走过程中运动变异性的变化,这可能解释了老年人跌倒发生率高的原因。

方法

20名女性,10名年轻女性(20 - 37岁)和10名老年女性(71 - 79岁)在跑步机上连续行走30个步态周期。使用非线性动力学分析右下肢选定运动学参数的时间序列。计算所有时间序列的最大Lyapunov指数和关联维数,以及替代的原始时间序列的最大Lyapunov指数。还计算每个步态周期选定离散点的标准差和变异系数。使用独立t检验进行统计比较。

结果

发现Lyapunov指数与其替代对应物有显著差异。这表明在时间序列中观察到的波动可能反映神经肌肉系统的确定性过程。对于所有评估参数,老年人表现出显著更大的Lyapunov指数和关联维数,表明局部不稳定。线性测量表明老年人表现出显著更高的变异性。

结论

非线性分析表明,某些步态参数时间序列中的波动不是随机的,而是表现出确定性行为。这种行为可能随着生理衰老而退化,导致局部不稳定。

相关性

老年人表现出局部不稳定增加或无法补偿运动过程中自然的步幅间变化。我们假设这可能是衰老导致跌倒增加的原因之一。未来的研究应尝试通过与病理受试者(即老年跌倒者)进行比较来评估这一假设,并检查本研究中使用的非线性方法的敏感性和特异性,以辅助临床评估。

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