Department of Rehabilitation, Kurosawa Hospital, Takasaki, Gunma, Japan.
Department of Physical Therapy, Graduate School of Health Care, Takasaki University of Health and Welfare, Takasaki, Gunma, Japan.
PeerJ. 2024 Sep 27;12:e18102. doi: 10.7717/peerj.18102. eCollection 2024.
Precise identification of motion phases in long-track speed skating is critical to characterize and optimize performance. This study aimed to estimate the intra- and inter-rater reliability of movement phase identification using inertial measurement units (IMUs) in long-track speed skating.
We analyzed 15 skaters using IMUs attached to specific body locations during a 500m skate, focusing on the stance phase, and identifying three movement events: Onset, Edge-flip, and Push-off. Reliability was assessed using intraclass correlation coefficients (ICC) and Bland-Altman analysis.
Results showed high intra- and inter-rater reliability (ICC [1,1]: 0.86 to 0.99; ICC [2,1]: 0.81 to 0.99) across all events. Absolute error ranged from 0.56 to 6.15 ms and from 0.92 to 26.29 ms for intra- and inter-rater reliability, respectively. Minimally detectable change (MDC) ranged from 17.56 to 62.22 ms and from 33.23 to 131.25 ms for intra- and inter-rater reliability, respectively.
Despite some additive and proportional errors, the overall error range was within acceptable limits, indicating negligible systematic errors. The measurement error range was small, demonstrating the accuracy of IMUs. IMUs demonstrate high reliability in movement phase identification during speed skating, endorsing their application in sports science for enhanced kinematic studies and training.
精确识别长道速滑中的运动阶段对于描述和优化表现至关重要。本研究旨在使用惯性测量单元(IMU)评估长道速滑中运动阶段识别的内部和外部可靠性。
我们在 15 名速滑运动员进行 500 米滑行时使用附着于特定身体部位的 IMU 进行分析,重点关注支撑阶段,并识别三个运动事件:起始、边缘翻转和蹬离。可靠性使用组内相关系数(ICC)和 Bland-Altman 分析进行评估。
结果表明,所有事件的内部和外部可靠性均很高(ICC [1,1]:0.86 至 0.99;ICC [2,1]:0.81 至 0.99)。绝对误差分别为 0.56 至 6.15 毫秒和 0.92 至 26.29 毫秒。内部和外部可靠性的最小可检测变化(MDC)分别为 17.56 至 62.22 毫秒和 33.23 至 131.25 毫秒。
尽管存在一些附加和比例误差,但整体误差范围在可接受范围内,表明存在可忽略的系统误差。测量误差范围较小,表明 IMU 的准确性。IMU 在速滑中的运动阶段识别中具有高可靠性,支持将其应用于运动科学,以进行更深入的运动学研究和训练。