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髋部束带对负重行走时躯干横向平面协调性和稳定性的影响。

Effects of a hip belt on transverse plane trunk coordination and stability during load carriage.

作者信息

Sharpe S R, Holt K G, Saltzman E, Wagenaar R C

机构信息

Salem State College, 352 Lafayette Street, Salem MA 01970, USA.

出版信息

J Biomech. 2008;41(5):968-76. doi: 10.1016/j.jbiomech.2007.12.018. Epub 2008 Mar 4.

DOI:10.1016/j.jbiomech.2007.12.018
PMID:18304555
Abstract

This study examined the transverse plane kinematics of the pelvis, thorax and head while participants walked at a range of speeds on a treadmill under three load conditions: no load, with a loaded backpack with no hip belt and with a loaded backpack with a hip belt. Research has suggested that one mechanism for adapting to heavy loads carried with no hip belt is to reduce the amplitudes and relative phase of transverse plane pelvic and thoracic rotations, in order to minimize rotational torque on the loaded upper body. Transverse plane rotation amplitudes of the pelvis, thorax, backpack and head were calculated from 3D kinematic data for 12 healthy subjects, walking at speeds of 0.5, 0.9, 1.3 and 1.7 ms(-1). Relative phase relation and its variability were also computed for pelvis-thorax rotations and backpack-thorax rotations. Stability of the coordination pattern was estimated as an inverse function of the variability in relative phase. The backpack with the hip belt allowed significantly larger transverse plane rotation amplitudes, along with increased stability of the coordination pattern, than the backpack with no hip belt. Motion patterns of the backpack and thorax suggested that the backpack frame was used to assist with the deceleration and reversal of the loaded thorax, driven by the pelvis through the hip belt connection. Use of the frame in this way may have required less trunk muscle activation and allowed for improved pattern stability.

摘要

本研究考察了参与者在跑步机上以一系列速度行走时,在三种负荷条件下骨盆、胸部和头部的横向平面运动学情况:无负荷、背负无腰带的负重背包以及背负带有腰带的负重背包。研究表明,一种适应无腰带背负重物的机制是减少横向平面骨盆和胸部旋转的幅度及相对相位,以最小化加载到上半身的旋转扭矩。从12名健康受试者在速度为0.5、0.9、1.3和1.7米/秒行走时的3D运动学数据中计算出骨盆、胸部、背包和头部的横向平面旋转幅度。还计算了骨盆 - 胸部旋转和背包 - 胸部旋转的相对相位关系及其变异性。协调模式的稳定性被估计为相对相位变异性的反函数。与无腰带背包相比,有腰带背包允许更大的横向平面旋转幅度,同时协调模式的稳定性增加。背包和胸部的运动模式表明,背包框架被用于协助加载的胸部的减速和反转,这是由骨盆通过腰带连接驱动的。以这种方式使用框架可能需要较少的躯干肌肉激活,并允许提高模式稳定性。

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