Ying Jiawei, Yu Haiyu, Cheng Liangliang, Li Junlei, Wu Bin, Song Liqun, Yi Pinqiao, Wang Haiyao, Liu Lingpeng, Zhao Dewei
Department of Orthopaedics, Affiliated Zhongshan Hospital of Dalian University, Dalian, Liaoning Province, China.
Biomater Transl. 2023 Sep 28;4(3):166-179. doi: 10.12336/biomatertransl.2023.03.005. eCollection 2023.
With continuous developments in additive manufacturing technology, tantalum (Ta) metal has been manufactured into orthopaedic implants with a variety of forms, properties and uses by three-dimensional printing. Based on extensive research in recent years, the design, processing and performance aspects of this new orthopaedic implant material have been greatly improved. Besides the bionic porous structure and mechanical characteristics that are similar to human bone tissue, porous tantalum is considered to be a viable bone repair material due to its outstanding corrosion resistance, biocompatibility, bone integration and bone conductivity. Numerous in vitro, in vivo, and clinical studies have been carried out in order to analyse the safety and efficacy of these implants in orthopaedic applications. This study reviews the most recent advances in manufacturing, characteristics and clinical application of porous tantalum materials.
随着增材制造技术的不断发展,钽(Ta)金属已通过三维打印制成具有多种形式、性能和用途的骨科植入物。基于近年来的广泛研究,这种新型骨科植入材料的设计、加工和性能方面都有了很大改进。除了具有与人体骨组织相似的仿生多孔结构和力学特性外,多孔钽因其出色的耐腐蚀性、生物相容性、骨整合性和骨传导性,被认为是一种可行的骨修复材料。为了分析这些植入物在骨科应用中的安全性和有效性,已经进行了大量的体外、体内和临床研究。本研究综述了多孔钽材料在制造、特性和临床应用方面的最新进展。