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首页> 外文期刊>Journal of Applied Biomechanics >Comparison of Five Kinematic-Based Identification Methods of Foot Contact Events During Treadmill Walking and Running at Different Speeds
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Comparison of Five Kinematic-Based Identification Methods of Foot Contact Events During Treadmill Walking and Running at Different Speeds

机译:基于五种基于运动学的跑步机步行和跑步过程中足部接触事件识别方法的比较

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摘要

This study involved a comparison of 5 kinematic-based algorithms to detect heel strike (HS) and toe-off (TO) events during human locomotion at different speeds. The objective was to assess how different running and walking speeds affect contact event determination during treadmill locomotion. Thirty male runners performed walking at 5 km/h and running at 9, 11, and 13 km/h on a treadmill. A kinematic system was used to capture the trajectories of 2 retro-reflective markers placed at the subject's right heel and second metatarsal. A footswitch device was used to determine the "true" times of HS and TO compared with 5 kinematic-based algorithms. The results of the current study illustrated that speed influences the HS error in the vertical position and horizontal velocity algorithms, and the TO error in the vertical position and horizontal velocity algorithms. This difference was found in the transition from walking to running; however, higher running speeds did not affect the error estimation. Higher accuracy was found with combined algorithms, namely, one using vertical acceleration and position and another using horizontal and vertical position with no influence from different locomotion speeds. Therefore, these algorithms are recommended in studies where speed is self-selected because they work well for a broad range of locomotion velocities.
机译:这项研究涉及5种基于运动学的算法的比较,以检测人体运动在不同速度下的脚跟撞击(HS)和脚趾离开(TO)事件。目的是评估跑步机运动期间不同的跑步速度和步行速度如何影响接触事件的确定。 30名男性跑步者在跑步机上以5 km / h的速度行走,并以9、11和13 km / h的速度跑步。运动学系统用​​于捕获放置在受试者右脚跟和第二meta骨上的2个反光标记的轨迹。与基于5种运动学的算法相比,使用脚踏开关设备确定HS和TO的“真实”时间。当前研究的结果表明,速度会影响垂直位置和水平速度算法中的HS误差,以及垂直位置和水平速度算法中的TO误差。在步行到跑步的过渡中发现了这种差异。但是,较高的运行速度不会影响误差估计。使用组合算法发现了更高的精度,即一种算法使用垂直加速度和位置,而另一种使用水平和垂直位置,而不受不同运动速度的影响。因此,这些算法在速度可自行选择的研究中被推荐使用,因为它们在很大的运动速度范围内都能很好地工作。

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