人体肋骨结构响应和几何特性的区域差异。

Joseph M Cormier, Joel D Stitzel, Stefan M Duma, Fumio Matsuoka
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引用次数: 0

摘要

通过将材料和几何特性结合到人体胸腔模型中,我们可以开发出一种损伤标准,它是材料的应力和应变的函数,而不是胸腔整体反应的函数。以往对肋的力学性能的研究主要集中在一组有限的特定肋上。在这项研究中,共从4具尸体上取下了52个肋骨标本。胸椎各部位的峰值矩差异有统计学意义(p < 0.01),前、外侧和后三个部位的峰值矩平均值分别为2、2.9和3.9 N-m。两个几何特性,旋转半径和离中性轴的距离,在不同区域(p < 0.0001)和肋骨水平(p = < 0.01, 0.05)上表现出显著差异。这项研究的结果可以用来更新目前的人类胸腔模型,以解释整个胸腔的强度和几何特性的变化。按区域计算肋骨特性的变化将改善损伤预测措施,从而提高设计系统预防胸部损伤的能力。
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Regional variation in the structural response and geometrical properties of human ribs.

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.

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