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一系列受控步行速度下足底压力的功能变异性本质。

The nature of functional variability in plantar pressure during a range of controlled walking speeds.

作者信息

McClymont Juliet, Pataky Todd C, Crompton Robin H, Savage Russell, Bates Karl T

机构信息

Institute of Ageing and Chronic Disease , William Duncan Building, L7 8TX Liverpool , UK.

Institute for Fiber Engineering , Shinshu University , Ueda , Japan.

出版信息

R Soc Open Sci. 2016 Aug 17;3(8):160369. doi: 10.1098/rsos.160369. eCollection 2016 Aug.

Abstract

During walking, variability in step parameters allows the body to adapt to changes in substrate or unexpected perturbations that may occur as the feet interface with the environment. Despite a rich literature describing biomechanical variability in step parameters, there are as yet no studies that consider variability at the body-environment interface. Here, we used pedobarographic statistical parametric mapping (pSPM) and two standard measures of variability, mean square error (m.s.e.) and the coefficient of variation (CV), to assess the magnitude and spatial variability in plantar pressure across a range of controlled walking speeds. Results by reduced major axis, and pSPM regression, revealed no consistent linear relationship between m.s.e. and speed or m.s.e. and Froude number. A positive linear relationship, however, was found between CV and walking speed and CV and Froude number. The spatial distribution of variability was highly disparate when assessed by m.s.e. and CV: relatively high variability was consistently confined to the medial and lateral forefoot when measured by m.s.e., while the forefoot and heel show high variability when measured by CV. In absolute terms, variability by CV was universally low (less than 2.5%). From these results, we determined that variability as assessed by m.s.e. is independent of speed, but dependent on speed when assessed by CV.

摘要

在行走过程中,步幅参数的变化使身体能够适应地面变化或在足部与环境接触时可能出现的意外扰动。尽管有大量文献描述了步幅参数的生物力学变化,但尚未有研究考虑身体与环境界面处的变化。在此,我们使用足压统计参数映射(pSPM)以及两种标准的变化量度,均方误差(m.s.e.)和变异系数(CV),来评估在一系列受控步行速度下足底压力的大小和空间变化。通过主轴缩减和pSPM回归得到的结果显示,m.s.e.与速度之间或m.s.e.与弗劳德数之间不存在一致的线性关系。然而,CV与步行速度以及CV与弗劳德数之间发现了正线性关系。当通过m.s.e.和CV进行评估时,变化的空间分布差异很大:通过m.s.e.测量时,相对较高的变化始终局限于前脚掌内侧和外侧,而通过CV测量时,前脚掌和脚跟显示出较高的变化。就绝对值而言,通过CV评估的变化普遍较低(小于2.5%)。从这些结果中,我们确定通过m.s.e.评估的变化与速度无关,但通过CV评估时则依赖于速度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70c2/5108968/0598acc31ed4/rsos160369-g1.jpg

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