Department of Combat Sports and Chinese Martial Arts, Chinese Culture University, Taipei 11114, Taiwan.
Department of Sports Medicine, China Medical University, Taichung 406040, Taiwan.
Sensors (Basel). 2021 Feb 7;21(4):1158. doi: 10.3390/s21041158.
Whole-body vibration (WBV) is commonly applied in exercise and rehabilitation and its safety issues have been a major concern. Vibration measured using accelerometers can be used to further analyze the vibration transmissibility. Optimal bending angles and rating of perceived exertion (RPE) evaluations have not been sufficiently explored to mitigate the adverse effect. Therefore, the aims of this study were to investigate the effect of various knee flexion angles on the transmissibility to the head and knee, the RPE during WBV exposure, and the link between the transmissibility to the head and the RPE. Sixteen participants randomly performed static squats with knee flexion angles of 90, 110, 130, and 150 degrees on a WBV platform. Three accelerometers were fixed on the head, knee, and center of the vibration platform to provide data of platform-to-head and platform-to-knee transmissibilities. The results showed that the flexion angle of 110 degrees induced the lowest platform-to-head transmissibility and the lowest RPE ( < 0.01). A positive correlation between RPE and the platform-to-head transmissibility was observed. This study concluded that a knee flexion of about 110 degrees is most appropriate for reducing vibration transmissibility. The reported RPE could be used to reflect the vibration impact to the head.
全身振动(WBV)常用于运动和康复,其安全性一直是人们关注的主要问题。使用加速度计测量的振动可用于进一步分析振动传递。尚未充分探讨最佳弯曲角度和感知用力评级(RPE)评估,以减轻不良影响。因此,本研究旨在研究各种膝关节弯曲角度对头部和膝关节传递的影响、WBV 暴露期间的 RPE 以及头部传递与 RPE 之间的关系。16 名参与者在 WBV 平台上随机进行 90、110、130 和 150 度的静态深蹲。三个加速度计分别固定在头部、膝盖和振动平台的中心,以提供平台到头和平台到膝盖的传递数据。结果表明,110 度的弯曲角度引起的头部平台传递最小,RPE 最低(<0.01)。观察到 RPE 与头部平台传递之间存在正相关关系。本研究得出结论,膝关节弯曲约 110 度最适合降低振动传递。报告的 RPE 可用于反映头部的振动影响。