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Concurrent validity of an inertial measurement system in tennis forehand drive

机译:网球正手驾驶中惯性测量系统的并发有效性

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The kinematic analysis in tennis forehand drive is crucial to understand the quality of this technique. The inertial measurement units (IMUs) due to its portability, occlusion free, larger capturing area and faster set up preparation, present an alternative to the optical motion capture systems (OS) considered a reference criterion system, however the degree of accuracy is task specific. This study aimed to compare the concurrent validity of a IMUs (Xsens MVN system) with an OS (Qualisys AB) for measuring upper and lower limb kinematics. Variables were evaluated during the forehand drive acceleration phase performed by 29 participants. The results demonstrated an excellent coefficient of multiple correlation (CMC) values (CMC > 0.95), for the majority of the variables with exception of shoulder in the anteroposterior plane (CMC: 0.85), and elbow in the axial plane (CMC: 0.79). Root-mean-square error (RMSE) were considered from good to tolerable (1.5 degrees < RMSE < 6.7 degrees), with exception of the elbow joint angle in transverse plane (RMSE: 13.1 degrees). One dimensional (1D) statistical parametrical mapping (SPM) demonstrated good agreement between the two systems, with exception of elbow in transverse plane. The present work presents an important advancement to a more frequently use of the IMU's in tennis, as well as in other racket sports.
机译:网球正手击球的运动学分析对于理解这项技术的质量至关重要。惯性测量单元(IMU)由于其便携性、无遮挡、更大的捕获区域和更快的设置准备,为被视为参考标准系统的光学运动捕获系统(OS)提供了一种替代方案,但精确度是特定于任务的。本研究旨在比较IMUs(Xsens MVN系统)和OS(Qualisys AB)测量上肢和下肢运动学的同时有效性。29名参与者在正手加速阶段对变量进行了评估。结果显示,除肩关节在前后平面(CMC:0.85)和肘关节在轴平面(CMC:0.79)外,大多数变量的多重相关系数(CMC)值(CMC>0.95)都很好。均方根误差(RMSE)从良好到可容忍(1.5度

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