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快速奔跑过程中胸椎、腰椎和骨盆运动学测量的可重复性

Reproducibility of kinematic measures of the thoracic spine, lumbar spine and pelvis during fast running.

作者信息

Mason D L, Preece S J, Bramah C A, Herrington L C

机构信息

University of Salford, School of Health Sciences, United Kingdom.

University of Salford, School of Health Sciences, United Kingdom.

出版信息

Gait Posture. 2016 Jan;43:96-100. doi: 10.1016/j.gaitpost.2013.11.007. Epub 2014 Feb 2.

Abstract

This study evaluated the reproducibility of the angular rotations of the thoracic spine, lumbar spine, pelvis and lower extremity during running. In addition, the study compared kinematic reproducibility between two methods for calculating kinematic trajectories: a six degrees of freedom (6DOF) approach and a global optimisation (GO) approach. With the first approach segments were treated independently, however with GO approach joint constraints were imposed to stop translation of adjacent segments. A total of 12 athletes were tested on two separate days whilst running over ground at a speed of 5.6ms(-1). The results demonstrated good between-day reproducibility for most kinematic parameters in the frontal and transverse planes with typical angular errors of 1.4-3°. Acceptable repeatability was also found in the sagittal plane. However, in this plane, although kinematic waveform shape was preserved between testing session, there were sometimes shifts in curve offset which lead to slightly higher angular errors, typically ranging from 1.9° to 3.5°. In general, the results demonstrated similar levels of reproducibility for both computational approaches (6DOF and, GO) and therefore suggest that GO may not lead to improved kinematic reproducibility during running.

摘要

本研究评估了跑步过程中胸椎、腰椎、骨盆和下肢角旋转的可重复性。此外,该研究还比较了两种计算运动轨迹方法之间的运动学可重复性:六自由度(6DOF)方法和全局优化(GO)方法。第一种方法中各节段独立处理,而在GO方法中施加关节约束以阻止相邻节段的平移。共有12名运动员在两个不同的日子里以5.6米/秒(-1)的速度在地面跑步时接受测试。结果表明,在额面和横面中,大多数运动学参数的日间可重复性良好,典型角误差为1.4 - 3°。在矢状面也发现了可接受的重复性。然而,在该平面中,尽管测试期间运动学波形形状得以保留,但有时曲线偏移会发生变化,导致角误差略高,通常在1.9°至3.5°之间。总体而言,结果表明两种计算方法(6DOF和GO)的可重复性水平相似,因此表明GO在跑步过程中可能不会提高运动学可重复性。

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