Piccinini Marco, Cugnoni Joel, Botsis John, Zacchetti Giovanna, Ammann Patrick, Wiskott Anselm
a Laboratory of Applied Mechanics and Reliability Analysis, École Polytechnique Fédérale de Lausanne , Station 9, CH-1015 Lausanne , Switzerland.
Comput Methods Biomech Biomed Engin. 2014;17(13):1403-17. doi: 10.1080/10255842.2012.736502. Epub 2013 Jun 3.
The authors propose a protocol to derive finite element (FE) models from micro computer tomography scans of implanted rat bone. A semi-automatic procedure allows segmenting the images using specimen-specific bone mineral density (BMD) thresholds. An open-source FE model generator processes the segmented images to a quality tetrahedral mesh. The material properties assigned to each element are integrated from the BMD field. Piecewise, threshold-dependent density-elasticity relationships are implemented to limit the effects of metal artefacts. A detailed sensitivity study highlights the coherence of the generated models and quantifies the influence of the modelling parameters on the results. Two applications of the protocol are proposed. The stiffness of bare and implanted rat tibiae specimens is predicted by simulating three-point bending and inter-implant displacement, respectively. Results are compared with experimental tests. The mean value and the variability between the specimens are well captured in both tests.
作者提出了一种从植入大鼠骨骼的微型计算机断层扫描中获取有限元(FE)模型的方案。一种半自动程序允许使用特定标本的骨矿物质密度(BMD)阈值对图像进行分割。一个开源的有限元模型生成器将分割后的图像处理成高质量的四面体网格。分配给每个单元的材料属性是从骨矿物质密度场中整合而来的。采用分段的、依赖阈值的密度-弹性关系来限制金属伪影的影响。一项详细的敏感性研究突出了所生成模型的一致性,并量化了建模参数对结果的影响。该方案提出了两个应用。分别通过模拟三点弯曲和植入物间位移来预测裸鼠和植入大鼠胫骨标本的刚度。将结果与实验测试进行比较。在这两项测试中,标本之间的平均值和变异性都得到了很好的体现。