Carnegie School of Sport, Leeds Beckett University, Leeds, UK.
The Football Association, Burton Upon Trent, UK.
Sci Med Footb. 2024 Nov;8(4):308-316. doi: 10.1080/24733938.2023.2237493. Epub 2023 Jul 18.
The concurrent validity and between-unit reliability of a foot-mounted inertial measurement unit (F-IMU) was investigated during linear and change of direction running drills. Sixteen individuals performed four repetitions of two drills (maximal acceleration and flying 10 m sprint) and five repetitions of a multi-directional movement protocol. Participants wore two F-IMUs (Playermaker) and 10 retro-reflective markers to allow for comparisons to the criterion system (Qualisys). Validity of the F-IMU derived velocity was assessed via root-mean-square error (RMSE), 95% limits of agreement (LoA) and mean difference with 95% confidence interval (CI). Between-unit reliability was assessed via intraclass correlation (ICC) with 90% CI and 95% LoA. The mean difference for instantaneous velocity for all participants and drills combined was -0.048 ± 0.581 m ∙ s, the LoA were from -1.09 to -1.186 m ∙ s and RMSE was 0.583 m ∙ s. The ICC ranged from 0.84 to 1, with LoA from -7.412 to 2.924 m ∙ s. Differences were dependent on the reference speed, with the greatest absolute difference (-0.66 m ∙ s) found at velocities above 7 m ∙ s. Between-unit reliability of the F-IMU ranges from good to excellent for all locomotor characteristics. Playermaker has good agreement with 3D motion capture for velocity and good to excellent between-unit reliability.
在直线和变向跑训练中,研究了脚部惯性测量单元(F-IMU)的同时效度和单元间可靠性。16 名参与者完成了两种训练(最大加速度和 10 米飞行短跑)各 4 次重复,以及 5 次多方向运动方案的重复。参与者佩戴了两个 F-IMU(PlayerMaker)和 10 个反向反射标记,以便与基准系统(Qualisys)进行比较。F-IMU 得出的速度的有效性通过均方根误差(RMSE)、95%一致性界限(LoA)和 95%置信区间(CI)的均值差异进行评估。单元间可靠性通过 90%CI 和 95%LoA 的组内相关系数(ICC)进行评估。所有参与者和训练的瞬时速度的平均差异为 -0.048 ± 0.581 m ∙ s,LoA 范围为 -1.09 至 -1.186 m ∙ s,RMSE 为 0.583 m ∙ s。ICC 范围为 0.84 至 1,LoA 范围为 -7.412 至 2.924 m ∙ s。差异取决于参考速度,在速度高于 7 m ∙ s 时,绝对差异最大(-0.66 m ∙ s)。F-IMU 的单元间可靠性对于所有运动特征均为良好至优秀。PlayerMaker 在速度方面与 3D 运动捕捉具有良好的一致性,并且单元间可靠性良好至优秀。