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Reliability of Overground Running Measures from 2D Video Analyses in a Field Environment

机译:现场环境中基于2D视频分析的地面运行措施的可靠性

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摘要

Two-dimensional running analyses are common in research and practice, and have been shown to be reliable when conducted on a treadmill. However, running is typically performed outdoors. Our aim was to determine the intra- and inter-rater reliability of two-dimensional analyses of overground running in an outdoor environment. Two raters independently evaluated 155 high-speed videos (240 Hz) of overground running from recreationally competitive runners on two occasions, seven days apart (test-retest study design). The reliability of foot-strike pattern (rear-foot, mid-foot, and fore-foot), foot-strike angle (°), and running speed (m/s) was assessed using weighted kappa (κ), percentage agreement, intraclass correlation coefficient (ICC), typical error (TE), and coefficient of variation (CV) statistics. Foot-strike pattern (agreement = 99.4%, κ = 0.96) and running speed (ICC = 0.98, TE = 0.09 m/s, CV = 2.1%) demonstrated excellent relative and absolute reliability. Foot-strike angle exhibited high relative reliability (ICC = 0.88), but suboptimal absolute reliability (TE = 2.5°, CV = 17.6%). Two-dimensional analyses of overground running outdoors were reliable for quantifying foot-strike pattern, foot-strike angle, and running speed, although foot-strike angle errors of 2.5° were typical. Foot-strike angle changes of less than 2.5° should be interpreted with caution in clinical settings, as they might simply reflect measurement errors.
机译:二维运行分析在研究和实践中很常见,并且已证明在跑步机上进行时是可靠的。但是,跑步通常在户外进行。我们的目标是确定在室外环境中进行的地面地面二维分析的内部和外部评估者可靠性。两名评分员分别两次评估了155个高速视频(240 Hz),这些视频来自休闲竞技选手的地上运动,相隔7天(重测研究设计)。使用加权kappa(κ),百分比一致性,以下方法评估了脚部搏动方式(后脚,中脚和前脚),脚踏角(°)和行驶速度(m / s)的可靠性。组内相关系数(ICC),典型误差(TE)和变异系数(CV)统计信息。步行模式(同意率为99.4%,κ= 0.96)和行驶速度(ICC = 0.98,TE = 0.09 m / s,CV = 2.1%)表现出极好的相对和绝对可靠性。步行角表现出较高的相对可靠性(ICC = 0.88),但绝对可靠性不理想(TE = 2.5°,CV = 17.6%)。二维的户外地面跑步分析对于量化步行模式,步行角度和行驶速度是可靠的,尽管典型的步行角度误差为2.5°。在临床环境中,应谨慎解释脚踏角小于2.5°的变化,因为它们可能只是反映了测量误差。

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