Kanko Robert M, Laende Elise K, Strutzenberger Gerda, Brown Marcus, Selbie W Scott, DePaul Vincent, Scott Stephen H, Deluzio Kevin J
Mechanical and Materials Engineering, Queen's University, Kingston, Canada.
Mechanical and Materials Engineering, Queen's University, Kingston, Canada.
J Biomech. 2021 Jun 9;122:110414. doi: 10.1016/j.jbiomech.2021.110414. Epub 2021 Apr 18.
Spatiotemporal parameters can characterize the gait patterns of individuals, allowing assessment of their health status and detection of clinically meaningful changes in their gait. Video-based markerless motion capture is a user-friendly, inexpensive, and widely applicable technology that could reduce the barriers to measuring spatiotemporal gait parameters in clinical and more diverse settings. Two studies were performed to determine whether gait parameters measured using markerless motion capture demonstrate concurrent validity with those measured using marker-based motion capture and a pressure-sensitive gait mat. For the first study, thirty healthy young adults performed treadmill gait at self-selected speeds while marker-based motion capture and synchronized video data were recorded simultaneously. For the second study, twenty-five healthy young adults performed over-ground gait at self-selected speeds while footfalls were recorded using a gait mat and synchronized video data were recorded simultaneously. Kinematic heel-strike and toe-off gait events were used to identify the same gait cycles between systems. Nine spatiotemporal gait parameters were measured by each system and directly compared between systems. Measurements were compared using Bland-Altman methods, mean differences, Pearson correlation coefficients, and intraclass correlation coefficients. The results indicate that markerless measurements of spatiotemporal gait parameters have good to excellent agreement with marker-based motion capture and gait mat systems, except for stance time and double limb support time relative to both systems and stride width relative to the gait mat. These findings indicate that markerless motion capture can adequately measure spatiotemporal gait parameters of healthy young adults during treadmill and over-ground gait.
时空参数可以表征个体的步态模式,从而有助于评估其健康状况并检测其步态中具有临床意义的变化。基于视频的无标记运动捕捉是一种用户友好、成本低廉且广泛适用的技术,它可以减少在临床和更多样化环境中测量时空步态参数的障碍。进行了两项研究,以确定使用无标记运动捕捉测量的步态参数与使用基于标记的运动捕捉和压敏步态垫测量的步态参数是否具有同时效度。在第一项研究中,30名健康的年轻成年人以自选速度在跑步机上行走,同时记录基于标记的运动捕捉和同步视频数据。在第二项研究中,25名健康的年轻成年人以自选速度在地面上行走,同时使用步态垫记录脚步落地情况并同步记录视频数据。运动学上的足跟触地和足趾离地步态事件用于识别不同系统之间相同的步态周期。每个系统测量九个时空步态参数,并在不同系统之间进行直接比较。使用布兰德-奥特曼方法、平均差异、皮尔逊相关系数和组内相关系数对测量结果进行比较。结果表明,除了相对于两个系统的站立时间和双支撑时间以及相对于步态垫的步幅宽度外,无标记的时空步态参数测量与基于标记的运动捕捉和步态垫系统具有良好到极好的一致性。这些发现表明,无标记运动捕捉可以充分测量健康年轻成年人在跑步机和地面行走过程中的时空步态参数。