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Experimental and simulated flexion tests of humerus

机译:肱骨屈曲实验和模拟

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To enhance car occupant protection during lateral impacts, experimental shoulder impacts have been realised. The simulation of these tests with a finite element method allows a better understanding of the shoulder response. Nevertheless, to simulate shoulder impacts, shoulder bone models have to be validated first. Thus, the aims of this study were firstly, to perform experimental dynamic tests on humerus, and then, to reproduce these tests by simulation in order to assess humerus models. Twelve humerus bones from six subjects (four males, two females, average age = 76) were submitted to flexion tests until failure. Drop tests were carried out with a 6 kg-mass at velocities from 1 to 2 m/s. Impact forces were recorded, and displacements were calculated through video analysis. Then, simulations were performed to compare humerus model responses under loading and experimental force-deflection data. Thus, this work provides experimental results that are used for the assessment of humerus models. The validated humerus bones could be integrated into global shoulder models for further applications such as simulation of car lateral impacts.
机译:为了增强在侧面碰撞期间对乘员的保护,已经实现了实验性肩部碰撞。使用有限元方法对这些测试进行仿真可以更好地理解肩部反应。但是,要模拟肩部撞击,必须首先验证肩部骨骼模型。因此,本研究的目的是首先对肱骨进行实验性动态测试,然后通过模拟重现这些测试以评估肱骨模型。将来自六个受试者的十二个肱骨(四名男性,两名女性,平均年龄= 76)进行屈曲测试直至失败。坠落试验的质量为6 kg,速度为1-2 m / s。记录冲击力,并通过视频分析计算位移。然后,进行仿真以比较在载荷和实验力-偏转数据下的肱骨模型响应。因此,这项工作提供了用于评估肱骨模型的实验结果。经过验证的肱骨可以集成到整体肩部模型中,以进一步应用,例如模拟汽车侧面碰撞。

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