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Regional Variation in the Structural Response and Geometrical Properties of Human Ribs

机译:人肋骨的结构响应和几何特性的区域变化

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摘要

By incorporating material and geometrical properties into a model of the human thorax one can develop an injury criterion that is a function of stress and strain of the material and not a function of the global response of the thorax. Previous research on the mechanical properties of ribs has focused on a limited set of specific ribs. For this study a total of 52 rib specimens were removed from four cadaver subjects. Variation in peak moment by thoracic region was significant (p < 0.01) with average values of 2, 2.9 and 3.9 N-m for the anterior, lateral and posterior regions respectively. Two geometrical properties, radius of gyration and distance from the neutral axis, showed significant variation by region (p < 0.0001) as well as by rib level (p = < 0.01, 0.05). The results of this study can be used to update current models of the human thorax to account for the variation in strength and geometrical properties throughout the rib cage. Accounting for the variation in rib properties by region will improve injury predictive measures and, therefore, the ability to design systems to prevent thoracic injury.
机译:通过将材料和几何特性纳入人类胸腔模型中,可以开发出一种损伤判据,该损伤判据是材料的应力和应变的函数,而不是胸腔整体响应的函数。先前对肋的机械性能的研究集中在有限的一组特定肋上。对于该研究,从四名尸体受试者中取出了52个肋骨标本。胸区峰值矩的变化很明显(p <0.01),前,外侧和后区的平均值分别为2、2.9和3.9 N-m。两种几何特性,回转半径和距中性轴的距离,显示出区域(p <0.0001)和肋骨水平(p = <0.01,0.05)的显着变化。这项研究的结果可用于更新人类胸部的当前模型,以说明整个肋骨笼中强度和几何特性的变化。考虑到肋骨特性随区域的变化,将改善损伤预测措施,因此,可以设计预防胸部损伤的系统。

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