Lindsay Timothy R, Yaggie James A, McGregor Stephen J
a School of Health Promotion & Human Performance , Eastern Michigan University , Ypsilanti , MI , USA.
b School of Health Sciences & Human Performance , Ithaca College , Ithaca , NY , USA.
Sports Biomech. 2016;15(1):11-22. doi: 10.1080/14763141.2015.1123760. Epub 2016 Feb 2.
This study investigated the reliability of a wireless accelerometer and its agreement with optical motion capture for the measurement of root mean square (RMS) acceleration during running. RMS acceleration provides a whole-body metric of movement mechanics and economy. Fifteen healthy college-age participants performed treadmill running for two 60-s trials at 2.22, 2.78, and 3.33 m/s and one trial of 150 s (five 30-s epochs) at 2.78 m/s. We assessed between-trial and within-trial reliability, and agreement in each axis between a trunk-mounted wireless accelerometer and a reflective marker on the accelerometer measured by optical motion capture. Intraclass correlations assessing between-trial repeatability were 0.89-0.97, depending on the axis, and intraclass correlations assessing within-trial repeatability were 0.99-1.00. Bland-Altman analyses assessing agreement indicated mean difference values between -0.03 and 0.03 g, depending on the axis. Anterio-posterior acceleration had the greatest limits of agreement (LOA) (±0.12 g) and vertical acceleration had the smallest LOA (±0.03 g). For measuring RMS acceleration of the trunk, this wireless accelerometer node provides repeatable and valid measurement compared with the standard laboratory method of optical motion capture.
本研究调查了一种无线加速度计的可靠性及其与光学动作捕捉在测量跑步过程中均方根(RMS)加速度方面的一致性。RMS加速度提供了运动力学和经济性的全身指标。15名健康的大学年龄参与者在跑步机上以2.22、2.78和3.33米/秒的速度进行了两次60秒的试验,并在2.78米/秒的速度下进行了一次150秒(五个30秒时段)的试验。我们评估了试验间和试验内的可靠性,以及通过光学动作捕捉测量的安装在躯干上的无线加速度计与加速度计上的反光标记在每个轴向上的一致性。评估试验间重复性的组内相关性为0.89 - 0.97,具体取决于轴,评估试验内重复性的组内相关性为0.99 - 1.00。评估一致性的Bland - Altman分析表明,根据轴的不同,平均差值在 - 0.03至0.03克之间。前后加速度的一致性界限(LOA)最大(±0.12克),垂直加速度的LOA最小(±0.03克)。对于测量躯干的RMS加速度,与标准的实验室光学动作捕捉方法相比,这种无线加速度计节点提供了可重复且有效的测量。