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具有微调微动分布的股骨促生长金属植入物。

Femur Auxetic Meta-Implants with Tuned Micromotion Distribution.

作者信息

Ghavidelnia Naeim, Bodaghi Mahdi, Hedayati Reza

机构信息

Department of Mechanical Engineering, Amiabir University of Technology (Tehran Polytechnic), Hafez Ave, Tehran 1591634311, Iran.

Department of Engineering, School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS, UK.

出版信息

Materials (Basel). 2020 Dec 29;14(1):114. doi: 10.3390/ma14010114.

Abstract

Stress shielding and micromotions are the most significant problems occurring at the bone-implants interface due to a mismatch of their mechanical properties. Mechanical 3D metamaterials, with their exceptional behaviour and characteristics, can provide an opportunity to solve the mismatch of mechanical properties between the bone and implant. In this study, a new porous femoral hip meta-implant with graded Poisson's ratio distribution was introduced and its results were compared to three other femoral hip implants (one solid implant, and two porous meta-implants, one with positive and the other with a negative distribution of Poisson's ratio) in terms of stress and micromotion distributions. For this aim, first, a well-known auxetic 3D re-entrant structure was studied analytically, and precise closed-form analytical relationships for its elastic modulus and Poisson's ratio were derived. The results of the analytical solution for mechanical properties of the 3D re-entrant structure presented great improvements in comparison to previous analytical studies on the structure. Moreover, the implementation of the re-entrant structure in the hip implant provided very smooth results for stress and strain distributions in the lattice meta-implants and could solve the stress shielding problem which occurred in the solid implant. The lattice meta-implant based on the graded unit cell distribution presented smoother stress-strain distribution in comparison with the other lattice meta-implants. Moreover, the graded lattice meta-implant gave minimum areas of local stress and local strain concentration at the contact region of the implants with the internal bone surfaces. Among all the cases, the graded meta-implant also gave micromotion levels which are the closest to values reported to be desirable for bone growth (40 µm).

摘要

应力屏蔽和微动是由于骨与植入物机械性能不匹配而在骨-植入物界面出现的最显著问题。机械三维超材料具有独特的行为和特性,可为解决骨与植入物之间机械性能不匹配问题提供契机。在本研究中,引入了一种具有渐变泊松比分布的新型多孔股骨髋关节超植入物,并将其结果与其他三种股骨髋关节植入物(一种实心植入物和两种多孔超植入物,一种泊松比为正分布,另一种为负分布)在应力和微动分布方面进行了比较。为此,首先对一种著名的负泊松比三维凹穴结构进行了分析研究,推导了其弹性模量和泊松比的精确闭式解析关系。与以往对该结构的分析研究相比,三维凹穴结构力学性能的解析解结果有了很大改进。此外,在髋关节植入物中采用凹穴结构,使晶格超植入物中的应力和应变分布非常平滑,能够解决实心植入物中出现的应力屏蔽问题。与其他晶格超植入物相比,基于渐变单胞分布的晶格超植入物的应力-应变分布更平滑。此外,渐变晶格超植入物在植入物与内部骨表面接触区域的局部应力和局部应变集中面积最小。在所有情况中,渐变超植入物产生的微动水平也最接近据报道对骨生长有利的值(40 µm)。

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