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具有类骨机械性能的增材制造多级 Voronoi 晶格支架。

Additively Manufactured Multilevel Voronoi-Lattice Scaffolds with Bonelike Mechanical Properties.

机构信息

Department of Engineering Mechanics, Jilin University, Changchun 130022, People's Republic of China.

出版信息

ACS Biomater Sci Eng. 2022 Jul 11;8(7):3022-3037. doi: 10.1021/acsbiomaterials.1c01482. Epub 2022 May 10.

Abstract

Irregular porous scaffold through Voronoi tessellation based on global modeling demonstrated randomness to a certain degree and susceptibility to producing large processing deviations. A modeling method for new types of scaffolds based on periodic arrays of Voronoi unit cell was proposed in this study. These porous scaffolds presented controllable local cells and satisfactory mechanical properties. The topological structure of the Voronoi unit cell was controlled using three independent cell design factors (Voronoi polyhedron volume , face-centered scaled factor , and body-centered scaled factor ), and multilevel Voronoi-lattice scaffolds were constructed on the basis of periodic arrays of the Voronoi unit cell. Compressive test and simulation were combined to quantify the mechanical properties of scaffolds. The regression equations were established using the response surface method (RSM) to determine relationships between Voronoi unit cell design factors and structural characteristic parameters and mechanical properties. The same trends were observed in stress-strain curves of the compressive test and simulation. The mechanical properties of scaffolds can be appropriately quantified via simulation. Regression equations based on RSM can properly predict the structural characteristic parameters and mechanical properties of the scaffold. Compared with , and exerted a stronger influence on the structural characteristic parameters and mechanical properties of the scaffold. The modeling method of the multilevel Voronoi-lattice scaffold based on the Voronoi unit cell was proposed in this study to design the porous scaffold and meet the requirements of human bone morphology, mechanical properties, and actual manufacturing by adjusting factors , , and . The proposed method can provide a feasible strategy for designing implants with suitable and similar morphologies and mechanical properties to cancellous bone.

摘要

基于全局建模的 Voronoi 胞元的不规则多孔支架在一定程度上表现出随机性,并容易产生较大的加工偏差。本研究提出了一种基于 Voronoi 单胞周期排列的新型支架建模方法。这些多孔支架具有可控的局部细胞和令人满意的机械性能。通过三个独立的单元设计因子(Voronoi 多面体体积、面心缩放因子和体心缩放因子)控制 Voronoi 单胞的拓扑结构,并基于 Voronoi 单胞的周期排列构建多级 Voronoi 晶格支架。结合压缩试验和模拟对支架的机械性能进行定量评估。采用响应面法(RSM)建立回归方程,确定 Voronoi 单胞设计因子与结构特征参数和机械性能之间的关系。压缩试验和模拟的应力-应变曲线呈现相同的趋势。通过模拟可以适当量化支架的机械性能。基于 RSM 的回归方程可以正确预测支架的结构特征参数和机械性能。与 和 相比, 对支架的结构特征参数和机械性能有更强的影响。本研究提出了一种基于 Voronoi 单胞的多级 Voronoi 晶格支架的建模方法,通过调整因子 、 和 来设计多孔支架,以满足人体骨骼形态、机械性能和实际制造的要求。该方法可以为设计具有与松质骨相似形态和机械性能的植入物提供一种可行的策略。

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