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步态期间用于客观压力中心轨迹分析的矢量场统计,具有对标量对小坐标系旋转敏感性的证据。

Vector field statistics for objective center-of-pressure trajectory analysis during gait, with evidence of scalar sensitivity to small coordinate system rotations.

作者信息

Pataky Todd C, Robinson Mark A, Vanrenterghem Jos, Savage Russell, Bates Karl T, Crompton Robin H

机构信息

Department of Bioengineering, Shinshu University, Japan.

Research Institute for Sport and Exercise Science, Liverpool John Moores University, UK.

出版信息

Gait Posture. 2014;40(1):255-8. doi: 10.1016/j.gaitpost.2014.01.023. Epub 2014 Mar 13.

Abstract

Center of pressure (COP) trajectories summarize the complex mechanical interaction between the foot and a contacted surface. Each trajectory itself is also complex, comprising hundreds of instantaneous vectors over the duration of stance phase. To simplify statistical analysis often a small number of scalars are extracted from each COP trajectory. The purpose of this paper was to demonstrate how a more objective approach to COP analysis can avoid particular sensitivities of scalar extraction analysis. A previously published dataset describing the effects of walking speed on plantar pressure (PP) distributions was re-analyzed. After spatially and temporally normalizing the data, speed effects were assessed using a vector-field paired Hotelling's T2 test. Results showed that, as walking speed increased, the COP moved increasingly posterior at heel contact, and increasingly laterally and anteriorly between ∼60 and 85% stance, in agreement with previous independent studies. Nevertheless, two extracted scalars disagreed with these results. Furthermore, sensitivity analysis found that a relatively small coordinate system rotation of 5.5° reversed the mediolateral null hypothesis rejection decision. Considering that the foot may adopt arbitrary postures in the horizontal plane, these sensitivity results suggest that non-negligible uncertainty may exist in mediolateral COP effects. As compared with COP scalar extraction, two key advantages of the vector-field approach are: (i) coordinate system independence, (ii) continuous statistical data reflecting the temporal extents of COP trajectory changes.

摘要

压力中心(COP)轨迹总结了足部与接触表面之间复杂的力学相互作用。每条轨迹本身也很复杂,在站立阶段的持续时间内包含数百个瞬时向量。为了简化统计分析,通常从每个COP轨迹中提取少量标量。本文的目的是展示一种更客观的COP分析方法如何能够避免标量提取分析的特定敏感性。对先前发表的描述步行速度对足底压力(PP)分布影响的数据集进行了重新分析。在对数据进行空间和时间归一化后,使用向量场配对霍特林T2检验评估速度效应。结果表明,随着步行速度的增加,COP在足跟接触时向后移动得越来越多,在站立约60%至85%之间向外侧和前方移动得越来越多,这与先前的独立研究一致。然而,两个提取的标量与这些结果不一致。此外,敏感性分析发现,相对较小的5.5°坐标系旋转会逆转中外侧零假设拒绝决策。考虑到足部在水平面可能采取任意姿势,这些敏感性结果表明,中外侧COP效应可能存在不可忽视的不确定性。与COP标量提取相比,向量场方法的两个关键优势是:(i)坐标系独立性,(ii)反映COP轨迹变化时间范围的连续统计数据。

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