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Evaluation of a force plate system for measuring center of pressure in railroad ballast

机译:用于测量铁路道ast压力中心的测力板系统的评估

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摘要

Traditional biomechanical analyses have focused primarily on the human gait across hard, flat surfaces and provide little information about human locomotion as a function of work environment or terrain. The purpose of this study was evaluation of a force plate system for measure of center of pressure (COP) in railroad ballast by comparing its accuracy across three surface conditions (hard surface, mainline ballast and walking ballast) with two configurations (level and 7 cross -slope). Custom walkways and an isolation fixture were developed to rigidly attach a force plate beneath ballast surfaces to collect the COP. The difference in COP location (Delta COPx, y, z) between the force plate system and a calibration system (motion capture derived) were compared using repeated -measures analysis of variance. Results indicate that the effects of surface condition and configuration were not significant for ACOPx, y, z and no differences were found among the three surface conditions during pairwise comparison, though ACOPx, y, z were different between the center and corners of the force plate in ballasts for both level and cross slope configurations. The system presented in this study demonstrates the feasibility of measuring the COP by using an isolation-fixture force plate to expand the scope of biomechanical studies on ballast surfaces that are level or cross-slope. (C) 2016 Elsevier B.V. All rights reserved.
机译:传统的生物力学分析主要集中于在坚硬,平坦表面上的步态,而很少提供有关根据工作环境或地形进行的人类运动的信息。这项研究的目的是通过比较三种表面条件(硬表面,干线镇流器和步行镇流器)与两种配置(水平和7交叉)的精度来评估用于铁路道ast的压力中心(COP)的测力板系统-坡)。开发了定制走道和隔离固定装置,以将压板牢固地固定在压载物表面下方以收集COP。使用方差的重复测量分析比较了测力板系统和校准系统(衍生自运动捕捉)之间的COP位置差异(Delta COPx,y,z)。结果表明,尽管ACOPx,y,z在力板中心和角部之间不同,但成对比较时,ACOPx,y,z的表面条件和构型的影响并不显着,并且在三个表面条件之间没有发现差异。用于水平和交叉斜坡配置的镇流器中。本研究中提出的系统证明了通过使用隔离夹具测力板来扩展水平或横坡道压载物表面的生物力学研究范围来测量COP的可行性。 (C)2016 Elsevier B.V.保留所有权利。

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