Computational comparison study of virtual compression and shear test for estimation of apparent elastic moduli under various boundary conditions

IF 2.2 4区 医学 Q3 ENGINEERING, BIOMEDICAL International Journal for Numerical Methods in Biomedical Engineering Pub Date : 2024-07-09 DOI:10.1002/cnm.3845
Jisun Kim, Jung Jin Kim
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Abstract

Virtual compression tests based on finite element analysis are representative noninvasive methods to evaluate bone strength. However, owing to the characteristic porous structure of bones, the material obtained from micro-computed tomography images in the finite-element model is not uniformly distributed. These characteristics cause differences in the apparent elastic moduli depending on the boundary conditions and affect the accuracy of bone-strength evaluation. Therefore, this study aimed to evaluate and compare the apparent elastic moduli under various, virtual-compression and shear-test boundary conditions. Four, nonuniform models were constructed with increasing model complexity. For representative boundary conditions, two, different, testing directions, and constrained surfaces were applied. As a result, the apparent elastic moduli of the nonuniform model varied up to 55.2% based on where the constrained surface was located in the single-end-cemented condition. Additionally, when connectivity in the test direction was lost, the accuracy of the apparent elastic moduli was low. A graphical comparison showed that the equivalent-stress distribution was more advantageous for analyzing load transferability and physical behavior than the strain-energy distribution. These results clearly show that the prediction accuracy of the apparent elastic moduli can be guaranteed if the boundary condition on the constraint and loading surfaces of the nonuniform model are applied symmetrically and the connectivity of the elements in the testing direction is well maintained. This study will aid in precision improvement of bone-strength-indicator determination for osteoporosis prevention.

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虚拟压缩和剪切试验的计算对比研究,用于估算各种边界条件下的表观弹性模量。
基于有限元分析的虚拟压缩试验是评估骨强度的代表性无创方法。然而,由于骨骼具有多孔结构的特点,从有限元模型中的微型计算机断层扫描图像中获得的材料并不是均匀分布的。这些特征会导致表观弹性模量因边界条件的不同而产生差异,影响骨强度评估的准确性。因此,本研究旨在评估和比较各种虚拟压缩和剪切测试边界条件下的表观弹性模量。随着模型复杂程度的增加,我们构建了四个非均匀模型。对于具有代表性的边界条件,应用了两个不同的测试方向和约束表面。因此,在单端加固条件下,根据约束面的位置,非均匀模型的表观弹性模量变化高达 55.2%。此外,当测试方向上的连通性丧失时,表观弹性模量的精确度也很低。图形比较显示,等效应力分布比应变能分布更有利于分析荷载传递性和物理行为。这些结果清楚地表明,如果在非均匀模型的约束面和加载面上对称施加边界条件,并保持测试方向上元素的连通性,就能保证表观弹性模量的预测精度。这项研究将有助于提高骨强度指标测定的精度,从而预防骨质疏松症。
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来源期刊
International Journal for Numerical Methods in Biomedical Engineering
International Journal for Numerical Methods in Biomedical Engineering ENGINEERING, BIOMEDICAL-MATHEMATICAL & COMPUTATIONAL BIOLOGY
CiteScore
4.50
自引率
9.50%
发文量
103
审稿时长
3 months
期刊介绍: All differential equation based models for biomedical applications and their novel solutions (using either established numerical methods such as finite difference, finite element and finite volume methods or new numerical methods) are within the scope of this journal. Manuscripts with experimental and analytical themes are also welcome if a component of the paper deals with numerical methods. Special cases that may not involve differential equations such as image processing, meshing and artificial intelligence are within the scope. Any research that is broadly linked to the wellbeing of the human body, either directly or indirectly, is also within the scope of this journal.
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