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通过双向微观力学模型计算并经纳米压痕验证的人骨单位和骨单位薄片的弹性特性

Elastic Properties of Human Osteon and Osteonal Lamella Computed by a Bidirectional Micromechanical Model and Validated by Nanoindentation.

作者信息

Korsa Radim, Lukes Jaroslav, Sepitka Josef, Mares Tomas

出版信息

J Biomech Eng. 2015 Aug;137(8):081002. doi: 10.1115/1.4030407. Epub 2015 Jun 9.

Abstract

Knowledge of the anisotropic elastic properties of osteon and osteonal lamellae provides a better understanding of various pathophysiological conditions, such as aging, osteoporosis, osteoarthritis, and other degenerative diseases. For this reason, it is important to investigate and understand the elasticity of cortical bone. We created a bidirectional micromechanical model based on inverse homogenization for predicting the elastic properties of osteon and osteonal lamellae of cortical bone. The shape, the dimensions, and the curvature of osteon and osteonal lamellae are described by appropriately chosen curvilinear coordinate systems, so that the model operates close to the real morphology of these bone components. The model was used to calculate nine orthotropic elastic constants of osteonal lamellae. The input values have the elastic properties of a single osteon. We also expressed the dependence of the elastic properties of the lamellae on the angle of orientation. To validate the model, we performed nanoindentation tests on several osteonal lamellae. We compared the experimental results with the calculated results, and there was good agreement between them. The inverted model was used to calculate the elastic properties of a single osteon, where the input values are the elastic constants of osteonal lamellae. These calculations reveal that the model can be used in both directions of homogenization, i.e., direct homogenization and also inverse homogenization. The model described here can provide either the unknown elastic properties of a single lamella from the known elastic properties at the level of a single osteon, or the unknown elastic properties of a single osteon from the known elastic properties at the level of a single lamella.

摘要

了解骨单位和骨单位薄片的各向异性弹性特性有助于更好地理解各种病理生理状况,如衰老、骨质疏松症、骨关节炎和其他退行性疾病。因此,研究和了解皮质骨的弹性非常重要。我们基于逆均匀化创建了一个双向微观力学模型,用于预测皮质骨骨单位和骨单位薄片的弹性特性。通过适当选择的曲线坐标系来描述骨单位和骨单位薄片的形状、尺寸和曲率,以使该模型接近这些骨成分的真实形态。该模型用于计算骨单位薄片的九个正交各向异性弹性常数。输入值为单个骨单位的弹性特性。我们还表达了薄片弹性特性对取向角的依赖性。为了验证该模型,我们对几个骨单位薄片进行了纳米压痕测试。我们将实验结果与计算结果进行了比较,两者之间有很好的一致性。逆模型用于计算单个骨单位的弹性特性,其中输入值是骨单位薄片的弹性常数。这些计算表明,该模型可用于均匀化的两个方向,即直接均匀化和逆均匀化。这里描述的模型既可以根据单个骨单位水平上已知的弹性特性提供单个薄片未知的弹性特性,也可以根据单个薄片水平上已知的弹性特性提供单个骨单位未知的弹性特性。

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