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通过设计质量探索增材制造用于骨再生的钛超材料的大孔隙率:一项系统文献综述

Exploring Macroporosity of Additively Manufactured Titanium Metamaterials for Bone Regeneration with Quality by Design: A Systematic Literature Review.

作者信息

Martinez-Marquez Daniel, Delmar Ylva, Sun Shoujin, Stewart Rodney A

机构信息

School of Engineering and Built Environment, Griffith University, Gold Coast, QLD 4222, Australia.

出版信息

Materials (Basel). 2020 Oct 27;13(21):4794. doi: 10.3390/ma13214794.

Abstract

Additive manufacturing facilitates the design of porous metal implants with detailed internal architecture. A rationally designed porous structure can provide to biocompatible titanium alloys biomimetic mechanical and biological properties for bone regeneration. However, increased porosity results in decreased material strength. The porosity and pore sizes that are ideal for porous implants are still controversial in the literature, complicating the justification of a design decision. Recently, metallic porous biomaterials have been proposed for load-bearing applications beyond surface coatings. This recent science lacks standards, but the Quality by Design (QbD) system can assist the design process in a systematic way. This study used the QbD system to explore the Quality Target Product Profile and Ideal Quality Attributes of additively manufactured titanium porous scaffolds for bone regeneration with a biomimetic approach. For this purpose, a total of 807 experimental results extracted from 50 different studies were benchmarked against proposed target values based on bone properties, governmental regulations, and scientific research relevant to bone implants. The scaffold properties such as unit cell geometry, pore size, porosity, compressive strength, and fatigue strength were studied. The results of this study may help future research to effectively direct the design process under the QbD system.

摘要

增材制造有助于设计具有精细内部结构的多孔金属植入物。合理设计的多孔结构可为生物相容性钛合金提供用于骨再生的仿生力学和生物学特性。然而,孔隙率增加会导致材料强度降低。对于多孔植入物而言,理想的孔隙率和孔径在文献中仍存在争议,这使得设计决策的合理性变得复杂。最近,金属多孔生物材料已被提议用于表面涂层以外的承重应用。这项最新的科学缺乏标准,但质量源于设计(QbD)系统可以系统地协助设计过程。本研究采用QbD系统,以仿生方法探索用于骨再生的增材制造钛多孔支架的质量目标产品概况和理想质量属性。为此,基于骨特性、政府法规以及与骨植入物相关的科研成果,将从50项不同研究中提取的总共807个实验结果与提议的目标值进行了基准对比。研究了支架的性能,如晶胞几何形状、孔径、孔隙率、抗压强度和疲劳强度。本研究结果可能有助于未来的研究在QbD系统下有效地指导设计过程。

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