Forman Jason L, Kent Richard W
a European Center for Injury Prevention, University of Navarra School of Medicine , Irunlarrea 1 (ed. Los Castaños s230), 31008 , Pamplona Navarra Spain.
Comput Methods Biomech Biomed Engin. 2014;17(2):94-107. doi: 10.1080/10255842.2012.671307. Epub 2012 Apr 19.
The costal cartilage often undergoes progressive calcification with age. This study sought to investigate the effects of calcification on the structural mechanics of whole costal cartilage segments. Models were developed for five costal cartilage specimens, including representations of the cartilage, the perichondrium, calcification, and segments of the rib and sternum. The material properties of the cartilage were determined through indentation testing; the properties of the perichondrium were determined through optimisation against structural experiments. The calcified regions were then expanded or shrunk to develop five different sensitivity analysis models for each. Increasing the relative volume of calcification from 0% to 24% of the cartilage volume increased the stiffness of the costal cartilage segments by a factor of 2.3-3.8. These results suggest that calcification may have a substantial effect on the stiffness of the costal cartilage which should be considered when modelling the chest, especially if age is a factor.
肋软骨通常会随着年龄的增长而逐渐钙化。本研究旨在探讨钙化对整个肋软骨节段结构力学的影响。针对五个肋软骨标本建立了模型,包括软骨、软骨膜、钙化以及肋骨和胸骨节段的表征。通过压痕测试确定软骨的材料特性;通过针对结构实验进行优化来确定软骨膜的特性。然后对钙化区域进行扩大或缩小,为每个区域开发五个不同的敏感性分析模型。将钙化的相对体积从软骨体积的0%增加到24%,肋软骨节段的刚度提高了2.3至3.8倍。这些结果表明,钙化可能对肋软骨的刚度有重大影响,在对胸部进行建模时应予以考虑,尤其是在年龄是一个因素的情况下。