An overview of 3D printed metal implants in orthopedic applications: Present and future perspectives

Обзор 3D-печатных металлических имплантатов в ортопедии: настоящее и перспективы
Xueyi Zhang, Jingjing Tian, Zhihong Wu, Yuanhao Wu, Jieying Liu, Lin Kang, Jin Hu, Yue Huang, F Liu, Hai Wang, Fuze Liu
2023-06-29

3D printed metal implantsadditive manufacturingbiocompatibilityorthopedic implantspatient-specific implants
With the ability to produce components with complex and precise structures, additive manufacturing or 3D printing techniques are now widely applied in both industry and consumer markets. The emergence of tissue engineering has facilitated the application of 3D printing in the field of biomedical implants. 3D printed implants with proper structural design can not only eliminate the stress shielding effect but also improve in vivo biocompatibility and functionality. By combining medical images derived from technologies such as X-ray scanning, CT, MRI, or ultrasonic scanning, 3D printing can be used to create patient-specific implants with almost the same anatomical structures as the injured tissues. Numerous clinical trials have already been conducted with customized implants. However, the limited availability of raw materials for printing and a lack of guidance from related regulations or laws may impede the development of 3D printing in medical implants. This review provides information on the current state of 3D printing techniques in orthopedic implant applications. The current challenges and future perspectives are also included.
1
3D printing enables production of orthopedic implants with complex, precise structures that can eliminate stress shielding and improve in vivo biocompatibility and functionality.
2
Combining medical imaging (X-ray, CT, MRI, ultrasound) with 3D printing facilitates creation of patient-specific implants matching injured anatomical structures.
3
Development of 3D-printed medical implants is limited by restricted availability of raw printing materials and lack of regulatory guidance or laws.
4
Numerous clinical trials have already been conducted using customized 3D-printed implants, demonstrating clinical application progress.
5
The review summarizes current 3D printing techniques for orthopedic implants and discusses present challenges and future perspectives for the field.

3D printed metal orthopedic implants

Current state, challenges, and future perspectives of using 3D printing technologies for design, fabrication, biocompatibility, anatomical customization, material availability, and regulatory guidance of metal orthopedic implants

Publication Details
Publication Date
2023-06-29
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Authors
Xueyi Zhang
Jingjing Tian
Zhihong Wu
Yuanhao Wu
Jieying Liu
Lin Kang
Jin Hu
Yue Huang
F Liu
Hai Wang
Fuze Liu
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