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Prediction of local proximal tibial subchondral bone structural stiffness using subject-specific finite element modeling: Effect of selected density-modulus relationship

机译:使用特定于对象的有限元建模预测胫骨软骨下近骨的局部结构刚度:所选密度-模量关系的影响

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摘要

Background: Quantitative computed tomography based subject-specific finite element modeling has potential to clarify the role of subchondral bone alterations in knee osteoarthritis initiation, progression, and pain initiation. Calculation of bone elastic moduli from image data is a basic step when constructing finite element models. However, different relationships between elastic moduli and imaged density (known as density-modulus relationships) have been reported in the literature. The objective of this study was to apply seven different trabecular-specific and two cortical-specific density-modulus relationships from the literature to finite element models of proximal tibia subchondral bone, and identify the relationship(s) that best predicted experimentally measured local subchondral structural stiffness with highest explained variance and least error.
机译:背景:基于定量计算机体层摄影术的特定于受试者的有限元建模有可能阐明软骨下骨改变在膝骨关节炎的发生,发展和疼痛发作中的作用。从图像数据计算骨骼弹性模量是构建有限元模型时的基本步骤。然而,文献中已经报道了弹性模量与成像密度之间的不同关系(称为密度-模量关系)。这项研究的目的是将文献中的七个不同的小梁特异性和两个皮质特异性密度模量关系应用到胫骨近软骨下骨的有限元模型中,并确定能最好地预测实验测量的局部软骨下结构的关系具有最高的解释方差和最小的误差的刚度。

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