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Feasibility of using virtual and body worn inertial sensors to detect whole-body decelerations during stopping

机译:使用虚拟和车身磨损惯性传感器的可行性来检测停止期间的全身减速

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The aim of this study was to explore the use of inertial sensors for determining the rate of deceleration of an athlete during controlled breaking during over-ground running. This study will investigate the application of inertial sensors in identifying kinematic parameters to examine the effects of shock attenuation through the body. This study consisted of participants performing a number of sub-maximal runs and stopping within given distances (6m and 3m) to control the rate of deceleration. Kinematic data was recorded using a combination of motion capture and custom build inertial sensors attached to the participants' distal fibulas and worn in a commercially available sports vest. From the data, tibia accelerations increased by 32% while peak upper torso accelerations decreased by 0.3% resulting in an overall increase in shock attenuation of 21%. This increase in attenuation was predominantly due to the ankle to knee attenuating 39% more shock, while the knee to sacrum and sacrum to upper torso both decreased by 6% and 2% respectively. As both the inertial sensor acceleration and motion capture derived acceleration displayed similar trends in shock absorption, it is difficult to detect variations in the rate of stopping using only peak impact parameters from an inertial sensor unit located on the upper torso. This is due to the varying shock attenuation capabilities of the lower joints in particular the knee which absorbed the majority of the shock under both stopping conditions.
机译:本研究的目的是探讨使用惯性传感器来确定运动员在经过地面运行期间控制运动员减速速度。本研究将研究惯性传感器在识别运动学参数中,以检查防震衰减通过身体的影响。本研究由参与者组成,在给定距离(6M和3M)内执行许多子最大运行并停止以控制减速速率。使用连接到参与者远端泳池的运动捕获和定制构建惯性传感器的组合来记录运动数据,并在市售的运动背心中穿着。从数据中,胫骨加速度增加了32%,而峰上躯干加速度降低0.3%,导致冲击衰减的总体增加21%。衰减的这种增加主要是由于踝关节膝关节减少了39%的冲击,而膝盖和骶骨到上部躯干分别降低了6%和2%。由于惯性传感器加速度和运动捕获导出的加速度显示出相似的减震趋势,因此难以从位于上躯干上的惯性传感器单元中使用峰值冲击参数的停止速率进行检测。这是由于尤其是膝盖的较大的较大接头的冲击衰减能力,该膝关节在阻止条件下吸收了大部分冲击的膝盖。

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