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通过同时进行压缩测试和微 CT 成像来确定大鼠椎体的失效行为。

Failure behaviour of rat vertebrae determined through simultaneous compression testing and micro-CT imaging.

机构信息

Department of Mechanical and Materials Engineering, Queen's University, Kingston, Ontario, Canada.

Bharti School of Engineering, Laurentian University, Sudbury, Ontario, Canada.

出版信息

J Mech Behav Biomed Mater. 2018 Mar;79:73-82. doi: 10.1016/j.jmbbm.2017.11.021. Epub 2017 Dec 26.

DOI:10.1016/j.jmbbm.2017.11.021
PMID:29287225
Abstract

Skeletal fractures, including those resulting from osteoporosis, result in significant healthcare and societal costs on an annual basis. Therefore, it is important to understand the mechanisms by which these fractures occur. Incremental compression testing combined with micro-CT imaging has been used to visualize the progression of failure in trabecular bone samples; however, these studies have ignored the potential contributions of the cortical shell. In the current study, incremental compression testing with simultaneous micro-CT imaging was performed on rat vertebrae from multiple disease states (healthy control, osteoporotic, osteoporotic + treatment). These tests allowed the progression of failure through an entire vertebral body to be visualized for the first time. Three distinct failure modes were observed throughout all specimens, independent of disease state. Two of these failure modes (types I and II), which were observed in 93% of all specimens, were associated with the vascular apertures in the vertebrae's dorsal and ventral surfaces. This behaviour is likely caused by the stress concentrations in the cortical shell resulting from the apertures themselves, coupled with the reduced trabecular bone volume adjacent to them. These results suggest that the combined contributions of both the cortical shell and trabecular bone must be considered when studying the compressive failure behaviour of rat vertebrae.

摘要

骨骼骨折,包括骨质疏松症引起的骨折,每年都会给医疗保健和社会带来巨大的成本。因此,了解这些骨折发生的机制非常重要。递增压缩测试结合微 CT 成像已被用于可视化小梁骨样本中失效的进展;然而,这些研究忽略了皮质壳的潜在贡献。在当前的研究中,对来自多种疾病状态(健康对照、骨质疏松症、骨质疏松症+治疗)的大鼠椎体进行了递增压缩测试和同时的微 CT 成像。这些测试首次允许观察整个椎体的失效过程。在所有标本中,无论疾病状态如何,都观察到了三种不同的失效模式。这两种失效模式(I 型和 II 型)在所有标本中观察到 93%,与椎体背侧和腹侧血管孔有关。这种行为可能是由于孔径本身导致皮质壳中的应力集中,加上它们附近的小梁骨体积减少所致。这些结果表明,在研究大鼠椎体的压缩失效行为时,必须考虑皮质壳和小梁骨的综合贡献。

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