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不同速度下非后足着地跑者跑步运动学中惯性测量单元测量的有效性。

Validity of IMU measurements on running kinematics in non-rearfoot strike runners across different speeds.

机构信息

Key Laboratory of Exercise and Health Sciences (Shanghai University of Sport), Ministry of Education, Shanghai, China.

出版信息

J Sports Sci. 2023 Jun;41(11):1083-1092. doi: 10.1080/02640414.2023.2259211. Epub 2023 Oct 20.

Abstract

This study aims to determine the validity of the lower extremity joint kinematics measured by inertial measurement units (IMUs) in non-rearfoot strike pattern (NRFS) runners across different speeds. Fifteen NRFS runners completed three 2-min running tests on a treadmill in random order at 8, 10 and 12 km/h, whilst data were synchronously collected using the IMU system and an optical motion capture system. Before the offset was corrected, the validity of the knee angle waveform was higher than that of the hip and ankle; after the offset was corrected, the validity increased in all three joints. The correlation between the touchdown angles in the sagittal plane measured by the two systems was relatively high after the offset was corrected. The running speed influenced the offset-corrected measurements, with higher error values at higher speeds. The IMU system was able to provide measurements of running kinematics in the sagittal plane of NRFS runners at different running speeds but was unable to reliably measure motion in the frontal and horizontal planes. Future research should analyse the 3D gait of NRFS runners under a larger range of speed conditions to provide evidentiary support for the use of IMUs in running analysis outside the laboratory.

摘要

本研究旨在确定惯性测量单元(IMU)在非后足着地(NRFS)跑步者不同速度下测量的下肢关节运动学的有效性。15 名 NRFS 跑步者在跑步机上以 8、10 和 12km/h 的随机顺序完成了三次 2 分钟的跑步测试,同时使用 IMU 系统和光学运动捕捉系统同步收集数据。在进行偏移修正之前,膝关节角度波形的有效性高于髋关节和踝关节;进行偏移修正后,所有三个关节的有效性都增加了。在进行偏移修正后,两个系统测量的矢状面触地角度之间的相关性较高。运行速度会影响经偏移修正的测量值,在较高速度下误差值更高。IMU 系统能够在不同的运行速度下为 NRFS 跑步者提供矢状面的运行运动学测量值,但无法可靠地测量额状面和水平面的运动。未来的研究应该在更大的速度范围内分析 NRFS 跑步者的 3D 步态,为在实验室外使用 IMU 进行跑步分析提供证据支持。

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