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材料和孔隙率对可降解支架内骨形成的影响
引用本文:高泽,石志良,李锋,张亚. 材料和孔隙率对可降解支架内骨形成的影响[J]. 医用生物力学, 2021, 36(4): 582-588
作者姓名:高泽  石志良  李锋  张亚
作者单位:武汉理工大学 机电工程学院;华中科技大学 同济医学院
基金项目:国家重点研发计划项目课题(2018YFB1105503)
摘    要:目的 研究可降解支架植入人体后的骨修复,不同材料和孔隙率对支架内骨形成的影响.方法 根据骨折愈合自然反应机理,运用有限元方法,结合支架几何结构,搭建以材料降解曲线和骨重建控制方程为基础的计算耦合模型.通过这一平台,选择5种材料、4种孔隙率的支架代表性体积元进行计算模拟分析,并通过骨密度和支架最大应力反映这一动态过程.结...

关 键 词:支架  孔隙率  骨形成  骨密度
收稿时间:2020-06-30
修稿时间:2020-08-27

The Effect of Materials and Porosity on Bone Formation of Degradable Scaffolds
GAO Ze,SHI Zhiliang,LI Feng,ZHANG Ya. The Effect of Materials and Porosity on Bone Formation of Degradable Scaffolds[J]. Journal of Medical Biomechanics, 2021, 36(4): 582-588
Authors:GAO Ze  SHI Zhiliang  LI Feng  ZHANG Ya
Affiliation:School of Mechanical and Electrical Engineering, Wuhan University of Technology;Tongji Medical College, Huazhong University of Science and Technology
Abstract:Objective To study the effect of different materials and porosities on bone formation in the scaffold after implantation of the degradable bone scaffold into human body. Methods According to natural reaction mechanism of fracture healing, the finite element method was used, combined with geometry of the scaffold, to establish a computationally coupled model based on material degradation curve and bone reconstruction control equation. Through this platform, representative volume elements of the scaffold with five kinds of materials and four types of porosities were selected for calculation and analysis, and dynamic process was reflected by bone mineral density (BMD) and maximum stress of the scaffold. Results The elastic modulus of the materials had a greater influence on growth of bone tissues in the scaffold. The smaller elastic modulus of the materials would lead to the greater amount of bone formation, but it would also have a greater impact on mechanical properties of the scaffold. The scaffold with higher porosity had lower rigidity, which could better promote formation of bone tissues, meanwhile it would also destroy mechanical stability of the scaffold. Conclusions According to performance requirements for different age, gender and location of bone tissues, personalized reference and calculation basis for selection of materials and porosity, structural design and clinical application of degradable porous bone scaffolds can be provided.
Keywords:scaffold   porosity   bone formation   bone mineral density (BMD)
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