Faculty of Medicine and Health, The University of Sydney, Sydney, NSW 2050, Australia.
School of Health and Biomedical Sciences, Royal Melbourne Institute of Technology, Melbourne, VIC 3000, Australia.
Sensors (Basel). 2024 Sep 2;24(17):5718. doi: 10.3390/s24175718.
There is limited validation for portable methods in evaluating high-speed running biomechanics, with inertial measurement unit (IMU) systems commonly used as wearables for this purpose. This study aimed to evaluate the validity of an IMU system in high-speed running compared to a 3D motion analysis system (MAS). One runner performed incremental treadmill running, from 12 to 18 km/h, on two separate days. Sagittal angles for the shank, knee, hip and pelvis were measured simultaneously with three IMUs and the MAS at the point of contact (POC), the timing when the foot initially hits the ground, as identified by IMU system acceleration, and compared to the POC identified via force plate. Agreement between the systems was evaluated using intra-class correlation coefficients, Pearson's , Bland-Altman limits of agreements, root mean square error and paired -tests. The IMU system reliably determined POC (which subsequently was used to calculate stride time) and measured hip flexion angle and anterior pelvic tilt accurately and consistently at POC. However, it displayed inaccuracy and inconsistency in measuring knee flexion and shank angles at POC. This information provides confidence that a portable IMU system can aid in establishing baseline running biomechanics for performance optimisation, and/or inform injury prevention programs.
在评估高速跑步的生物力学时,便携式方法的验证有限,惯性测量单元 (IMU) 系统通常被用作为此目的而设计的可穿戴设备。本研究旨在评估与 3D 运动分析系统 (MAS) 相比,IMU 系统在高速跑步中的有效性。一名跑步者在两天内分别在跑步机上以 12 到 18 公里/小时的速度进行增量跑步。在接触点 (POC) 同时使用三个 IMU 和 MAS 测量小腿、膝盖、臀部和骨盆的矢状角度,接触点是通过 IMU 系统加速度确定的脚最初触地的时间点,并与通过力板确定的 POC 进行比较。使用组内相关系数、Pearson's 、Bland-Altman 协议界限、均方根误差和配对检验评估系统之间的一致性。IMU 系统可靠地确定了 POC(随后用于计算步幅时间),并在 POC 处准确且一致地测量髋关节屈曲角度和骨盆前倾角度。然而,它在测量 POC 处的膝关节屈曲和小腿角度时表现出不准确和不一致。这些信息提供了信心,即便携式 IMU 系统可以帮助建立性能优化的基线跑步生物力学,和/或为预防受伤的计划提供信息。