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3D 打印刚度梯度股骨支架的设计与性能分析。

Design and performance analysis of 3D-printed stiffness gradient femoral scaffold.

机构信息

School of Advanced Manufacturing Engineering, Chongqing University of Posts and Telecommunications, Chongqing, 400065, China.

Department of Orthopaedics, The Affiliated Hospital of Southwest Medical University, Sichuan Provincial Laboratory of Orthopaedic Engineering, Luzhou, 646000, Sichuan, China.

出版信息

J Orthop Surg Res. 2023 Feb 18;18(1):120. doi: 10.1186/s13018-023-03612-z.

Abstract

Studies on 3D-printed porous bone scaffolds mostly focus on materials or structural parameters, while the repair of large femoral defects needs to select appropriate structural parameters according to the needs of different parts. In this paper, a kind of stiffness gradient scaffold design idea is proposed. Different structures are selected according to the different functions of different parts of the scaffold. At the same time, an integrated fixation device is designed to fix the scaffold. Finite element method was used to analyze the stress and strain of homogeneous scaffolds and the stiffness gradient scaffolds, and the relative displacement and stress between stiffness gradient scaffolds and bone in the case of integrated fixation and steel plate fixation. The results showed that the stress distribution of the stiffness gradient scaffolds was more uniform, and the strain of host bone tissue was changed greatly, which was beneficial to the growth of bone tissue. The integrated fixation method is more stable, less stress and evenly distributed. Therefore, the integrated fixation device combined with the design of stiffness gradient can repair the large femoral bone defect well.

摘要

关于 3D 打印多孔骨支架的研究大多集中在材料或结构参数上,而对于股骨大缺损的修复则需要根据不同部位的需求选择合适的结构参数。本文提出了一种刚度梯度支架设计思路,根据支架不同部位的不同功能选择不同的结构,同时设计了一种一体化固定装置来固定支架。利用有限元方法分析了均一支架和刚度梯度支架的应力和应变,以及一体化固定和钢板固定情况下刚度梯度支架与骨之间的相对位移和应力。结果表明,刚度梯度支架的应力分布更加均匀,宿主骨组织的应变变化较大,有利于骨组织的生长。一体化固定方法更加稳定,应力分布更加均匀。因此,与刚度梯度设计相结合的一体化固定装置可以很好地修复股骨大骨缺损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f05/9938570/5b6e02e2f8d6/13018_2023_3612_Fig1_HTML.jpg

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