Intra-cyclic analysis of the front crawl swimming technique with an inertial measurement unit

IF 0.5 Q4 SPORT SCIENCES
André Engel, Nina Schaffert, Roy Ploigt, K. Mattes
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引用次数: 4

Abstract

Sports scientists and coaches strive to identify and analyse performance relevant parameters and to optimize them in the training practice. In swimming, this process is time-consuming and requires expensive and professional video equipment, which is currently considered the gold standard. Since inertial measurement units (IMUs) are increasingly interesting for athletes, are more easily accessible and are less disturbing to wear, they offer an ideal alternative to classic video-supported motion analysis. In addition, IMUs provide further data of interest to scientists and trainers. The present study aims to transfer the findings from the video analysis data to the data measured with an IMU. The focus is on the frontal crawl and its key movements, body roll, angular velocity and forward acceleration in relation to their intra-cyclic variations. Ten athletes from regional to national level swam 100 m front crawl and the video recording was combined with the IMU to analyse the key positions and find similarities and differences between the swimmers. The findings are the basis for an automatic pattern recognition system to provide coaches and scientists with immediate feedback on the execution of movements and to decide which parameters should be specifically trained to improve performance.
带惯性测量单元的前爬行游泳技术的循环内分析
运动科学家和教练努力识别和分析性能相关参数,并在训练实践中优化它们。在游泳中,这个过程很耗时,需要昂贵的专业视频设备,这是目前被认为是黄金标准的。由于惯性测量单元(imu)对运动员来说越来越有趣,更容易获得,穿着更少干扰,它们提供了经典视频支持运动分析的理想替代方案。此外,imu还提供了科学家和培训人员感兴趣的进一步数据。本研究旨在将视频分析数据的发现转化为IMU测量的数据。重点是在正面爬行和它的关键动作,身体翻滚,角速度和向前加速度与他们的周期内的变化。从地区到国家级10名运动员进行100米自由泳比赛,并将录像与IMU相结合,分析关键动作,找出选手之间的异同。这些发现是自动模式识别系统的基础,该系统为教练和科学家提供有关动作执行的即时反馈,并决定应该对哪些参数进行专门训练以提高表现。
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来源期刊
CiteScore
2.20
自引率
0.00%
发文量
4
审稿时长
6 weeks
期刊介绍: JHSE contributes to the continuing professional development of sport and exercise sciences, including a high-level research in biomechanics, exercise physiology, sports history, nutrition, and a wide range of social and ethical issues in physical activity, and other aspects of sports medicine related quality of life and biophysical investigation of sports performance.
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