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首页> 外文期刊>Journal of Applied Biomechanics >Ground Reaction Forces During Human Locomotion on Railroad Ballast
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Ground Reaction Forces During Human Locomotion on Railroad Ballast

机译:人在铁路道Ball上的运动过程中的地面反作用力

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Locomotion over ballast surfaces provides a unique situation for investigating the bio-mechanics of gait. Although much research has focused on level and sloped walking on a smooth, firm surface in order to understand the common kinematic and kinetic variables associated with human locomotion, the literature currently provides few if any discussions regarding the dynamics of locomotion on surfaces that are either rocky or uneven. The purpose of this study was to investigate a method for using force plates to measure the ground reaction forces (GRFs) during gait on ballast. Ballast is a construction aggregate of unsymmetrical rock used in industry for the purpose of forming track bed on which railway ties are laid or in yards where railroad cars are stored. It is used to facilitate the drainage of water and to create even running surfaces. To construct the experimental ballast surfaces, 31.75-mm (1 1/4-in.) marble ballast at depths of approximately 63.5 mm (2.5 in.) or 101.6 mm (4 in.) were spread over a carpeted vinyl tile walkway specially designed for gait studies. GRF magnitudes and time histories from a force plate were collected under normal smooth surface and under both ballast surface conditions for five subjects. GRF magnitudes and time histories during smooth surface walking were similar to GRF magnitudes and time histories from the two ballast surface conditions. The data presented here demonstrate the feasibility of using a force plate system to expand the scope of biomechanical analyses of locomotion on ballast surfaces.
机译:压载物表面的运动为研究步态的生物力学提供了独特的情况。尽管许多研究都集中在光滑,结实的表面上的水平和倾斜行走,以了解与人类运动有关的常见运动学和动力学变量,但目前文献很少或几乎没有关于岩石运动的动力学讨论。或不均匀。这项研究的目的是研究一种使用压板来测量压载物步态时地面反作用力(GRF)的方法。压载物是非对称岩石的建筑骨料,在工业中用于形成用于铺设铁路枕木的轨道床或用于存放铁路车辆的院子的目的。它用于促进排水并创建平坦的运行表面。为了构造实验压舱物表面,将31.75毫米(1 1/4英寸)大理石压舱物铺在专门设计的铺有地毯的乙烯基瓷砖走道上,其深度约为63.5毫米(2.5英寸)或101.6毫米(4英寸)。用于步态研究。在正常光滑表面和两种压载物表面条件下,从五名受试者中收集了来自测力板的GRF量值和时间历史。光滑表面行走过程中的GRF量值和时间历史与两种压载物表面状况下的GRF量值和时间历史相似。此处提供的数据证明了使用测力板系统扩展压载物表面运动的生物力学分析范围的可行性。

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