首页> 外文期刊>Journal of biomechanical engineering. >Comparison of the Linear Finite Element Prediction of Deformation and Strain of Human Cancellous Bone to 3D Digital Volume Correlation Measurements
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Comparison of the Linear Finite Element Prediction of Deformation and Strain of Human Cancellous Bone to 3D Digital Volume Correlation Measurements

机译:人体松质骨的变形和应变的线性有限元预测与3D数字体积相关测量的比较

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摘要

The mechanical properties of cancellous bone and the biological response of the tissue to mechanical loading are related to deformation and strain in the trabeculae during function. Due to the small size of trabeculae, their motion is difficult to measure. To avoid the need to measure trabecular motions during loading the finite element method has been used to estimate trabecular level mechanical deformation. This analytical approach has been empirically successful in that the analytical models are solvable and their results correlate with the macroscopically measured stiffness and strength of bones. The present work is a direct comparison of finite element predictions to measurements of the deformation and strain at near trabecular level. Using the method of digital volume correlation, we measured the deformation and calculated the strain at a resolution approaching the trabecular level for cancellous bone specimens loaded in uniaxial compression. Smoothed results from linearly elastic finite element models of the same mechanical tests were correlated to the empirical three-dimensional (3D) deformation in the direction of loading with a coefficient of determination as high as 97% and a slope of the prediction near one. However, real deformations in the directions perpendicular to the loading direction were not as well predicted by the analytical models. Our results show, that the finite element modeling of the internal deformation and strain in cancellous bone can be accurate in one direction but that this does not ensure accuracy for all deformations and strains.
机译:松质骨的机械特性和组织对机械负荷的生物学反应与功能期间小梁的变形和应变有关。由于小梁的尺寸很小,其运动很难测量。为了避免在加载过程中需要测量小梁运动,有限元方法已被用来估计小梁水平的机械变形。这种分析方法在经验上是成功的,因为这些分析模型是可求解的,并且其结果与宏观测量的骨骼刚度和强度相关。目前的工作是有限元预测与小梁水平附近的变形和应变测量的直接比较。使用数字体积相关方法,我们测量了变形并以接近于小梁水平的分辨率计算了单轴压缩加载的松质骨标本的应变。来自相同机械测试的线性弹性有限元模型的平滑结果与载荷方向上的经验三维(3D)变形相关,确定系数高达97%,预测斜率接近1。然而,解析模型不能很好地预测垂直于加载方向的实际变形。我们的结果表明,松质骨内部变形和应变的有限元建模可以在一个方向上精确,但是这不能确保所有变形和应变的准确性。

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