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Heterogeneous Strain Distribution in the Subchondral Bone of Human Osteoarthritic Femoral Heads Measured with Digital Volume Correlation

机译:具有数字体积相关性的人骨关节炎股头骨髓内骨的异质应变分布

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摘要

Osteoarthritis (OA) is a chronic disease, affecting approximately one third of people over the age of 45. Whilst the etiology and pathogenesis of the disease are still not well understood, mechanics play an important role in both the initiation and progression of osteoarthritis. In this study, we demonstrate the application of stepwise compression, combined with microCT imaging and digital volume correlation (DVC) to measure and evaluate full-field strain distributions within osteoarthritic femoral heads under uniaxial compression. A comprehensive analysis showed that the microstructural features inherent in OA bone did not affect the level of uncertainties associated with the applied methods. The results illustrate the localization of strains at the loading surface as well as in areas of low bone volume fraction and subchondral cysts. Trabecular thickness and connectivity density were identified as the only microstructural parameters with any association to the magnitude of local strain measured at apparent yield strain or the volume of bone exceeding yield strain. This work demonstrates a novel approach to evaluating the mechanical properties of the whole human femoral head in case of severe OA.
机译:骨关节炎(OA)是一种慢性疾病,影响了45岁以上的大约三分之一的人。虽然疾病的病因和发病机制仍然不满足,但机械在骨关节炎的开始和进展中起重要作用。在本研究中,我们证明了逐步压缩的应用,结合MicroCT成像和数字体积相关(DVC)来测量和评估单轴压缩下的骨关节炎股骨头内的全场应变分布。综合分析表明,OA骨中固有的微观结构特征不影响与应用方法相关的不确定性水平。结果说明了菌株在装载表面的定位以及低骨体积分数和骨髓性囊肿区域。鉴定了在表观屈服菌株或超过产量应变的骨骼体积的唯一与局部菌株的唯一关联的唯一微观结构参数的唯一微观结构参数。在严重的OA的情况下,这项工作表明了评估全人股头的机械性能的新方法。

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