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Additively manufactured metallic biomaterials

脚手架 材料科学 生物相容性材料 纳米技术 组织工程 计算机科学 耐久性 多孔性 制作 机械工程 复合材料 制造工程 生物医学工程 工程类 病理 数据库 医学 替代医学
作者
Elham Davoodi,Hossein Montazerian,Anooshe Sadat Mirhakimi,Masoud Zhianmanesh,Osezua Ibhadode,Shahriar Imani Shahabad,Reza Esmaeilizadeh,Einollah Sarikhani,Sahar Toorandaz,Shima A. Sarabi,Rohollah Nasiri,Yangzhi Zhu,Javad Kadkhodapour,Bingbing Li,Ali Khademhosseini,Ehsan Toyserkani
出处
期刊:Bioactive Materials [Elsevier BV]
卷期号:15: 214-249 被引量:117
标识
DOI:10.1016/j.bioactmat.2021.12.027
摘要

Metal additive manufacturing (AM) has led to an evolution in the design and fabrication of hard tissue substitutes, enabling personalized implants to address each patient's specific needs. In addition, internal pore architectures integrated within additively manufactured scaffolds, have provided an opportunity to further develop and engineer functional implants for better tissue integration, and long-term durability. In this review, the latest advances in different aspects of the design and manufacturing of additively manufactured metallic biomaterials are highlighted. After introducing metal AM processes, biocompatible metals adapted for integration with AM machines are presented. Then, we elaborate on the tools and approaches undertaken for the design of porous scaffold with engineered internal architecture including, topology optimization techniques, as well as unit cell patterns based on lattice networks, and triply periodic minimal surface. Here, the new possibilities brought by the functionally gradient porous structures to meet the conflicting scaffold design requirements are thoroughly discussed. Subsequently, the design constraints and physical characteristics of the additively manufactured constructs are reviewed in terms of input parameters such as design features and AM processing parameters. We assess the proposed applications of additively manufactured implants for regeneration of different tissue types and the efforts made towards their clinical translation. Finally, we conclude the review with the emerging directions and perspectives for further development of AM in the medical industry.
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