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Assessment of three-dimensional joint kinematics of the upper limb during simulated swimming using wearable inertial-magnetic measurement units

机译:使用可穿戴惯性磁测量单元评估模拟游泳过程中上肢的三维关节运动学

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摘要

The analysis of the joint kinematics during swimming plays a fundamental role both in sports conditioning and in clinical contexts. Contrary to the traditional video analysis, wearable inertial-magnetic measurements units (IMMUs) allow to analyse both the underwater and aerial phases of the swimming stroke over the whole length of the swimming pool. Furthermore, the rapid calibration and short data processing required by IMMUs provide coaches and athletes with an immediate feedback on swimming kinematics during training. This study aimed to develop a protocol to assess the three-dimensional kinematics of the upper limbs during swimming using IMMUs. Kinematics were evaluated during simulated dry-land swimming trials performed in the laboratory by eight swimmers. A stereo-photogrammetric system was used as the gold standard. The results showed high coefficient of multiple correlation (CMC) values, with median (first-third quartile) of 0.97 (0.93-0.95) and 0.99 (0.97-0.99) for simulated front-crawl and breaststroke, respectively. Furthermore, the joint angles were estimated with an accuracy increasing from distal to proximal joints, with wrist indices showing median CMC values always higher than 0.90. The present findings represent an important step towards the practical use of technology based on IMMUs for the kinematic analysis of swimming in applied contexts.
机译:游泳过程中关节运动学的分析在运动调节和临床环境中都起着重要作用。与传统的视频分析相反,可穿戴式惯性磁测量单元(IMMU)可以分析整个游泳池整个行程的水下和空中相位。此外,IMMU要求的快速校准和短数据处理为教练和运动员提供了训练期间游泳运动学的即时反馈。这项研究旨在开发一种协议,以评估使用IMMU在游泳过程中上肢的三维运动学。运动学在实验室由八名游泳者进行的旱地模拟游泳试验中进行了评估。立体摄影测量系统用作金标准。结果显示,多重相关系数(CMC)值较高,模拟的前爬泳和蛙泳的中位值(前三分之四)分别为0.97(0.93-0.95)和0.99(0.97-0.99)。此外,从远端到近端关节的估计角度准确度增加,手腕指数显示中值CMC值始终高于0.90。目前的发现代表了迈向基于IMMU的技术的实际应用迈出的重要一步,该技术用于在应用环境中进行游泳运动学分析。

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