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Temporal Structure of Support Surface Translations Drive the Temporal Structure of Postural Control During Standing

机译:支撑表面平移的时间结构在站立时驱动姿势控制的时间结构

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摘要

A healthy biological system is characterized by a temporal structure that exhibits fractal properties and is highly complex. Unhealthy systems demonstrate lowered complexity and either greater or less predictability in the temporal structure of a time series. The purpose of this research was to determine if support surface translations with different temporal structures would affect the temporal structure of the center of pressure (COP) signal. Eight healthy young participants stood on a force platform that was translated in the anteroposterior direction for input conditions of varying complexity: white noise, pink noise, brown noise, and sine wave. Detrended fluctuation analysis was used to characterize the long-range correlations of the COP time series in the AP direction. Repeated measures ANOVA revealed differences among conditions (P < .001). The less complex support surface translations resulted in a less complex COP compared to normal standing. A quadratic trend analysis demonstrated an inverted-u shape across an increasing order of predictability of the conditions (P < .001). The ability to influence the complexity of postural control through support surface translations can have important implications for rehabilitation.
机译:健康的生物系统的特征在于具有分形特性且高度复杂的时间结构。不健康的系统在时间序列的时间结构中显示出较低的复杂性以及或多或少的可预测性。这项研究的目的是确定具有不同时间结构的支撑表面平移是否会影响压力中心(COP)信号的时间结构。八名健康的年轻参与者站在受力平台上,该受力平台在前后方向上转换,以适应各种复杂性的输入条件:白噪声,粉噪声,棕噪声和正弦波。使用去趋势波动分析来表征COP时间序列在AP方向上的远距离相关性。重复测量方差分析显示条件之间存在差异(P <.001)。与正常站立相比,较不复杂的支撑表面平移导致较不复杂的COP。二次趋势分析显示,条件的可预测性从高到低顺序呈倒U形(P <.001)。通过支撑表面平移影响姿势控制的复杂性的能力可能对康复产生重要影响。

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