Faculty of Sport and Physical Education, University of Belgrade, 11000 Belgrade, Serbia.
Newstream, 3 Rapaport Street, Kfar Sava 4465141, Israel.
Sensors (Basel). 2024 Oct 14;24(20):6624. doi: 10.3390/s24206624.
This study aimed to validate the automated temporal analysis of countermovement vertical jump (CMJ) using MMPose, a markerless pose estimation framework, by comparing it with the gold-standard 3D marker-based motion capture system. Twelve participants performed five CMJ trials, which were simultaneously recorded using the marker-based system and two smartphone cameras capturing both sides of the body. Key kinematic points, including center of mass (CoM) and toe trajectories, were analyzed to determine jump phases and temporal variables. The agreement between methods was assessed using Bland-Altman analysis, root mean square error (RMSE), and Pearson's correlation coefficient (r), while consistency was evaluated via intraclass correlation coefficient (ICC 3,1) and two-way repeated-measures ANOVA. Cohen's effect size (d) quantified the practical significance of differences. Results showed strong agreement (r > 0.98) with minimal bias and narrow limits of agreement for most variables. The markerless system slightly overestimated jump height and CoM vertical velocity, but ICC values (ICC > 0.91) confirmed strong reliability. Cohen's d values were near zero, indicating trivial differences, and no variability due to recording side was observed. Overall, MMPose proved to be a reliable alternative for in-field CMJ analysis, supporting its broader application in sports and rehabilitation settings.
本研究旨在通过与金标准 3D 标记运动捕捉系统进行比较,验证 MMPose(一种无标记姿态估计框架)在反向垂直跳跃(CMJ)自动时间分析中的有效性。12 名参与者进行了 5 次 CMJ 试验,这些试验同时使用基于标记的系统和两个拍摄身体两侧的智能手机相机进行记录。分析了关键运动学点,包括质心(CoM)和脚趾轨迹,以确定跳跃阶段和时间变量。使用 Bland-Altman 分析、均方根误差 (RMSE) 和 Pearson 相关系数 (r) 评估方法之间的一致性,通过组内相关系数 (ICC 3,1) 和双向重复测量 ANOVA 评估一致性。Cohen 的效应量 (d) 量化了差异的实际意义。结果表明,对于大多数变量,具有很强的一致性(r > 0.98),最小偏差和较窄的一致性界限。无标记系统略微高估了跳跃高度和 CoM 垂直速度,但 ICC 值(ICC > 0.91)证实了很强的可靠性。Cohen 的 d 值接近零,表明差异微不足道,并且没有因记录侧而产生的可变性。总体而言,MMPose 被证明是 CMJ 场内分析的可靠替代方案,支持其在运动和康复领域的更广泛应用。