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The role of fabric in the quasi-static compressive mechanical properties of human trabecular bone from various anatomical locations

机译:织物在不同解剖位置的人小梁骨准静态压缩力学性能中的作用

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Osteoporosis leads to an increased risk of bone fracture. While bone density and architecture can be assessed in vivo with increasing accuracy using CT and MRI, their relationship with the critical mechanical properties at various anatomical sites remain unclear. The objective of this study was to quantify the quasi-static compressive mechanical properties of human trabecular bone among different skeletal sites and compare their relationships with bone volume fraction and a measure of microstructural anisotropy called fabric. Over 600 trabecular bone samples from six skeletal sites were assessed by and tested in uniaxial compression. Bone volume fraction correlated positively with elastic modulus, yield stress, ultimate stress, and the relationships depended strongly on skeletal site. The account of fabric improved these correlations substantially, especially when the data of all sites were pooled together, but the fabric–mechanical property relationships remained somewhat distinct among the anatomical sites. The study confirms that, beyond volume fraction, fabric plays an important role in determining the mechanical properties of trabecular bone and should be exploited in mechanical analysis of clinically relevant sites of the human skeleton.
机译:骨质疏松症导致骨折的风险增加。尽管可以使用CT和MRI以更高的准确性在体内评估骨密度和结构,但它们与各种解剖部位的关键机械性能之间的关系仍不清楚。这项研究的目的是量化不同骨骼部位之间小梁骨的准静态压缩力学性能,并比较它们与骨体积分数的关系以及一种称为织物的微观结构各向异性的度量。对来自六个骨骼部位的600多个小梁骨样品进行了单轴压缩评估并进行了测试。骨体积分数与弹性模量,屈服应力,极限应力呈正相关,其关系在很大程度上取决于骨骼部位。织物的说明极大地改善了这些相关性,特别是当所有部位的数据汇总在一起时,但是在解剖部位之间织物-机械性能的关系仍然有些不同。该研究证实,除了体积分数外,织物在确定小梁骨的机械性能方面起着重要作用,应在人体骨骼临床相关部位的力学分析中加以利用。

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