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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Static and dynamic reliability of WIMU PRO (TM) accelerometers according to anatomical placement
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Static and dynamic reliability of WIMU PRO (TM) accelerometers according to anatomical placement

机译:根据解剖学放置的WiMu Pro(TM)加速度计的静态和动态可靠性

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摘要

Currently, the use of accelerometry to analyze training and competition is on the increase. Thus, accelerometers must be reliable when calculating different variables from raw data. The purpose of this investigation was to assess the reliability of triaxial accelerometers that contain inertial devices for measuring external loads in sports. Four and eight WIMU PRO (TM) inertial devices (RealTrack Systems, Almeria, Spain) were assessed in laboratory and specific sport conditions, respectively. The laboratory test was performed in static (with and without stress) and dynamic (10 and 30 Hz vibrations) conditions. In addition, two tests were performed during continuous and intermittent activity: (1) an incremental progressive running test on the treadmill and (2) 5 min of a Soccer-Specific Aerobic Field Test (SAFT(90)), where the devices were placed on ankle, knee, lower back and scapulae. Direct assessment of the accelerometers by calculating a vector magnitude, expressed as total acceleration (AcelT), was used for reliability using bias, +/- 95% limits of agreement and coefficient of variation. A t-test and Pearson's r were performed for test-retest reliability. In the laboratory assessments, an excellent within- and between-device static (with and without stress) and dynamic reliability were found (coefficient of variation = 0.23%-0.78%). A very high reliability was also observed in the incremental treadmill test (coefficient of variation = 2.20%) and SAFT(90) (coefficient of variation = 2.96%) with a nearly perfect correlation between devices (r = 0.99-1.00). Finally, in the between-sessions reliability analysis, excellent results (p = 0.46-0.98; t = 0.01-0.73) and a very strong correlation (r = 0.86-0.96) was found with p values greater than 0.05 indicating no differences between the tests. In conclusion, the accelerometers of the tested device have shown excellent results for within- and between-device reliability and in test-retest analysis. Thus, this device can calculate all variables that depend on accelerometry measurement such as PlayerLoad (TM) or impacts in different ranges, and in different anatomical locations.
机译:目前,使用加速度分析培训和竞争正在增加。因此,在从原始数据计算不同变量时,加速度计必须是可靠的。本研究的目的是评估三轴加速度计的可靠性,其包含用于测量运动中的外部负载的惯性装置。在实验室和特定的体育条件下,分别在实验室和特定运动条件下评估了四和八个WiMu Pro(TM)惯性装置(Realtack Systems,Almeria)。实验室测试在静态(有和不胁迫)和动态(10和30 Hz振动)条件下进行。此外,在连续和间歇性活动期间进行两次测试:(1)跑步机上的增量渐进运行试验和(2)5分钟的足球特定的有氧场测试(SAFT(90)),其中放置了装置在脚踝,膝盖,腰部和肩胛骨上。通过计算作为总加速度(Acelt)表示的矢量幅度的直接评估加速度计,用于使用偏差,+/- 95%的协议限制和变异系数的可靠性。进行T-Test和Pearson的R进行测试 - 保持最可靠性。在实验室评估中,发现了一种优异的内部和器件之间的静态(具有和不带应力)和动态可靠性(变异系数= 0.23%-0.78%)。在增量跑步机试验(变异系数= 2.20%)和Saft(90)(变异系数= 2.96%)中也观察到非常高的可靠性,其装置之间几乎完美的相关性(R = 0.99-1.00)。最后,在会话之间的可靠性分析中,优异的结果(p = 0.46-0.98; t = 0.01-0.73),P值大于0.05的P值显示出非常强烈的相关性(r = 0.86-0.96),表明差异测试。总之,测试装置的加速度计显示了器件内和之间的可靠性和之间的优异结果,并且在测试 - 保持性分析中。因此,该设备可以计算依赖于加速度测量的所有变量,例如玩具负器(TM)或不同范围内的影响,以及在不同的解剖位置。

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