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人股骨小梁骨结构与力学性能之间的相关性

Correlations between structural and mechanical properties of human trabecular femur bone.

作者信息

Nikodem Anna

机构信息

Division of Biomedical Engineering and Experimental Mechanics, Wrocław University of Technology, Wrocław, Poland.

出版信息

Acta Bioeng Biomech. 2012;14(2):37-46.

Abstract

In this article, the author presents mathematical relationships between the structural and mechanical properties of cancellous human bone tissue obtained by experimental analysis of specimens. Bone tissue material can adjust its internal structure to the existing loading conditions. The mechanical properties affect the structural properties but changes in structural properties likewise cause changes in the mechanical properties of the tissue. In normal tissue, the processes of tissue construction, destruction, and reconstruction are mutually balanced and complementary; if that balance is disturbed, lesions can occur. Therefore, normal bone tissue and pathologically changed tissue (osteoporosis and osteoarthrosis) coming from the area of human femoral head were examined. The structural properties of cancellous tissue specimens were determined non-destructively for three-dimensional reconstructions with the use of modern micro-CT methods. The mechanical properties of the specimens were determined by an uniaxial compression test in three orthogonal directions. Next, in order to specify the compressive strength, a failure test was conducted in the direction perpendicular to the neck-shaft angle of the hip joint.

摘要

在本文中,作者通过对标本的实验分析,展示了人体松质骨组织的结构与力学性能之间的数学关系。骨组织材料能够根据现有的负荷条件调整其内部结构。力学性能会影响结构性能,但结构性能的变化同样会引起组织力学性能的改变。在正常组织中,组织构建、破坏和重建过程相互平衡且相辅相成;若这种平衡被打破,就可能出现病变。因此,对取自人体股骨头区域的正常骨组织以及病理改变组织(骨质疏松症和骨关节炎)进行了研究。利用现代微计算机断层扫描(micro-CT)方法对松质组织标本的结构性能进行无损测定,以用于三维重建。通过在三个正交方向上进行单轴压缩试验来测定标本的力学性能。接下来,为了确定抗压强度,在垂直于髋关节颈干角的方向上进行了破坏试验。

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