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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Rhombicuboctahedron unit cell based scaffolds for bone regeneration: geometry optimization with a mechanobiology – driven algorithm
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Rhombicuboctahedron unit cell based scaffolds for bone regeneration: geometry optimization with a mechanobiology – driven algorithm

机译:用于骨再生的菱形橡胶纤维单位细胞支架:用力学驱动算法进行几何优化

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AbstractIn a context more and more oriented towards customized medical solutions, we propose a mechanobiology-driven algorithm to determine the optimal geometry of scaffolds for bone regeneration that is the most suited to specific boundary and loading conditions. In spite of the huge number of articles investigating different unit cells for porous biomaterials, no studies are reported in the literature that optimize the geometric parameters of such unit cells based on mechanobiological criteria. Parametric finite element models of scaffolds with rhombicuboctahedron unit cell were developed and incorporated into an optimization algorithm that combines them with a computational mechanobiological model. The algorithm perturbs iteratively the geometry of the unit cell until the best scaffold geometry is identified, i.e. the geometry that allows to maximize the formation of bone. Performances of scaffolds with rhombicuboctahedron unit cell were compared with those of other scaffolds with hexahedron unit cells. We found that scaffolds with rhombicuboctahedron unit cell are particularly suited for supporting medium-low loads, while, for higher loads, scaffolds with hexahedron unit cells are preferable. The proposed algorithm can guide the orthopaedic/surgeon in the choice of the best scaffold to be implanted in a patient-specific anatomic region.Highlights
机译:<![cdata [ 抽象 在越来越多的定向定制医疗解决方案中,我们提出了一种机械机动学驱动的算法来确定最佳算法用于骨再生的支架的几何形状,其是最适合特定的边界和装载条件。尽管研究了多孔生物材料的不同单位细胞的大量文章,但在文献中没有报道研究,其基于机动机动学标准优化这种单位细胞的几何参数。开发了具有菱霉酮单元单元细胞的支架的参数有限元模型,并结合到优化算法中,将它们与计算力学模型结合起来。算法迭代迭代地识别单元电池的几何形状,直到识别最佳支架几何形状,即允许最大化骨骼形成的几何形状。将支架与菱霉酮单元单元的性能与六碳水单元细胞的其他支架进行比较。我们发现,具有菱形覆盖物单元电池的支架特别适用于支撑介质低负载,而对于较高的负载,具有六面体单元电池的支架是优选的。该算法可以在选择最佳支架中植入患者特异性的解剖区域中的骨科/外科医生。 < CE:抽象XMLNS:CE =“http://www.elsevier.com/xml/common/dtd”xmlns =“http://www.elsevier.com/xml/ja/dtd”id =“ab0010”class = “作者 - 突出显示”XML:lang =“en”查看=“全部”> 亮点

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