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A Novel Method for Whole Body Vibration Platform Characterization for Clinical Applications

机译:一种新型临床应用全身振动平台表征的方法

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In the last decades, many studies have been conducted on the biological effects resulting from Whole-Body Vibration (WBV) platforms, even if benefits or side effects resulting from exposure to whole-body vibrations in sport and rehabilitation applications are often conflicting. These discrepancies are likely due also to different operating conditions such as load, unload, load position on footboard, etc. Since acceleration differences could affect the biological response of the person it would be suitable to verify the actual vibrations. Nevertheless a standard and widespread accepted method for measuring and verifying the actual vibrations provided by a WBV device has not been established yet. The authors performed a characterization of a novel WBV platform by developing a method reported in section II. The tests carried out in different conditions show that the footboard doesn't provide quite uniform vibrations along the vertical direction over the platform. Furthermore, transversal accelerations have been detected and in some cases they reached the 25% of the vertical ones. Currently, very few studies have investigated whether a WBV platform produces comparable accelerations in at least two points of the footboard. This paper proposes a method for the characterization of WBV platforms and the comparison of their performances.
机译:在过去的几十年中,许多研究已经在全身振动(WBV)平台产生的生物效应上进行,即使在运动和康复应用中的全身振动引起的益处或副作用通常是矛盾的。由于加速差异可能会影响验证实际振动的人的生物响应可能会影响诸如负载,卸载,负载位置等不同的操作条件,例如加载,卸载,负载位置等。然而,尚未建立一个标准和广泛的可接受的测量方法,用于测量和验证WBV设备提供的实际振动。作者通过在第二节中报告的方法进行新型WBV平台的表征。在不同条件下进行的测试表明,踏板不能在平台上沿垂直方向提供相当均匀的振动。此外,已经检测到横向加速度,并且在某些情况下,它们达到了垂直的25%。目前,很少有研究已经研究了WBV平台是否在脚踏板的至少两点中产生可比加速度。本文提出了一种用于表征WBV平台的方法和其性能的比较。

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