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小波分析揭示了与视觉和次要任务相关的姿势动力学中的多个时间尺度。

Multiple timescales in postural dynamics associated with vision and a secondary task are revealed by wavelet analysis.

作者信息

Chagdes James R, Rietdyk Shirley, Haddad Jeff M, Zelaznik Howard N, Raman Arvind, Rhea Christopher K, Silver Tobin A

机构信息

School of Mechanical Engineering, Purdue University, West Lafayette, IN, 47907-2038, USA.

出版信息

Exp Brain Res. 2009 Aug;197(3):297-310. doi: 10.1007/s00221-009-1915-1. Epub 2009 Jul 4.

Abstract

Discrete wavelet analysis is used to resolve the center of pressure time series data into several timescale components, providing new insights into postural control. Healthy young and elderly participants stood quietly with their eyes open or closed and either performed a secondary task or stood quietly. Without vision, both younger and older participants had reduced energy in the long timescales, supporting the concept that vision is used to control low frequency postural sway. Furthermore, energy was increased at timescales corresponding to closed-loop (somatosensory and vestibular) and open-loop mechanisms, consistent with the idea of a shift from visual control to other control mechanisms. However, a relatively greater increase was observed for older adults. With a secondary task a similar pattern was observed-increased energy at the short and moderate timescales, decreased energy at long timescales. The possibility of a common strategy-at the timescale level-in response to postural perturbations is considered.

摘要

离散小波分析用于将压力中心时间序列数据分解为几个时间尺度成分,为姿势控制提供新的见解。健康的年轻和老年参与者睁眼或闭眼安静站立,要么执行一项次要任务,要么安静站立。在没有视觉的情况下,年轻和老年参与者在长时间尺度上的能量都降低了,这支持了视觉用于控制低频姿势摆动的概念。此外,在与闭环(体感和前庭)和开环机制相对应的时间尺度上能量增加,这与从视觉控制向其他控制机制转变的观点一致。然而,老年人的能量增加相对更大。在执行次要任务时,观察到类似的模式——在短和中等时间尺度上能量增加,在长时间尺度上能量降低。研究考虑了在时间尺度水平上应对姿势扰动的共同策略的可能性。

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