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Additively Manufactured Scaffolds for Bone Tissue Engineering and the Prediction of their Mechanical Behavior: A Review

机译:用于骨骼组织工程的增材制造支架及其力学行为的预测:综述

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摘要

Additive manufacturing (AM), nowadays commonly known as 3D printing, is a revolutionary materials processing technology, particularly suitable for the production of low-volume parts with high shape complexities and often with multiple functions. As such, it holds great promise for the fabrication of patient-specific implants. In recent years, remarkable progress has been made in implementing AM in the bio-fabrication field. This paper presents an overview on the state-of-the-art AM technology for bone tissue engineering (BTE) scaffolds, with a particular focus on the AM scaffolds made of metallic biomaterials. It starts with a brief description of architecture design strategies to meet the biological and mechanical property requirements of scaffolds. Then, it summarizes the working principles, advantages and limitations of each of AM methods suitable for creating porous structures and manufacturing scaffolds from powdered materials. It elaborates on the finite-element (FE) analysis applied to predict the mechanical behavior of AM scaffolds, as well as the effect of the architectural design of porous structure on its mechanical properties. The review ends up with the authors’ view on the current challenges and further research directions.
机译:增材制造(AM),今天通常称为3D打印,是一种革命性的材料加工技术,特别适合于生产形状复杂且通常具有多种功能的小批量零件。因此,它对制造患者专用植入物具有广阔的前景。近年来,在生物制造领域实施增材制造已经取得了显着进展。本文概述了用于骨组织工程(BTE)支架的最新AM技术,尤其是金属生物材料制成的AM支架。它首先简要描述了满足脚手架生物学和机械性能要求的建筑设计策略。然后,总结了每种AM方法的工作原理,优点和局限性,这些方法适用于创建多孔结构和由粉末材料制造支架。它详细介绍了用于预测AM支架的力学行为的有限元(FE)分析,以及多孔结构的建筑设计对其力学性能的影响。审查最后以作者对当前挑战和进一步研究方向的观点发表。

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