Design, printing, and engineering of regenerative biomaterials for personalized bone healthcare

Z Jia, X Xu, D Zhu, Y Zheng - Progress in Materials Science, 2023 - Elsevier
Trauma-and disease-related skeletal defects and illnesses are plaguing millions of people
especially in an ageing globe. Recently, the convergence of additive manufacturing (AM) …

Development of lattice structure with selective laser melting process: A state of the art on properties, future trends and challenges

ME Korkmaz, MK Gupta, G Robak, K Moj… - Journal of Manufacturing …, 2022 - Elsevier
Lattice structures are vital for biological applications because of its numerous benefits (for
example, faster and stronger binding to bone tissue). Consequently, processing of lattice …

[HTML][HTML] Research progress on the design and performance of porous titanium alloy bone implants

C Song, L Liu, Z Deng, H Lei, F Yuan, Y Yang… - Journal of Materials …, 2023 - Elsevier
The porous structure design of implants can not only obtain a more lightweight implant but
also provide more space for its cell growth. The technology development of additive …

Additive manufacturing of Ti6Al4V alloy via electron beam melting for the development of implants for the biomedical industry

JA Tamayo, M Riascos, CA Vargas, LM Baena - Heliyon, 2021 - cell.com
Additive Manufacturing (AM) or rapid prototyping technologies are presented as one of the
best options to produce customized prostheses and implants with high-level requirements in …

Topological design, permeability and mechanical behavior of additively manufactured functionally graded porous metallic biomaterials

XY Zhang, G Fang, S Leeflang, AA Zadpoor, J Zhou - Acta biomaterialia, 2019 - Elsevier
Recent advances in additive manufacturing (AM) have enabled the fabrication of functionally
graded porous biomaterials (FGPBs) for application as orthopedic implants and bone …

Design of 3D printed scaffolds for bone tissue engineering: A review

S Kanwar, S Vijayavenkataraman - Bioprinting, 2021 - Elsevier
Every year, millions of people around the world undergo bone graft and artificial prosthesis
transplants which engenders the repair and/or replacement of native bone for treating bone …

The biomimetic design and 3D printing of customized mechanical properties porous Ti6Al4V scaffold for load-bearing bone reconstruction

B Zhang, X Pei, C Zhou, Y Fan, Q Jiang, A Ronca… - Materials & Design, 2018 - Elsevier
Abstract The Ti6Al4V alloy is one of the most commonly used in orthopedic surgery.
Mechanical property of implant contributes important biological functions for load-bearing …

Porous scaffold design for additive manufacturing in orthopedics: a review

H Chen, Q Han, C Wang, Y Liu, B Chen… - … in bioengineering and …, 2020 - frontiersin.org
With the increasing application of orthopedic scaffolds, a dramatically increasing number of
requirements for scaffolds are precise. The porous structure has been a fundamental design …

Trabecular-like Ti-6Al-4V scaffolds for orthopedic: fabrication by selective laser melting and in vitro biocompatibility

H Liang, Y Yang, D Xie, L Li, N Mao, C Wang… - Journal of Materials …, 2019 - Elsevier
Porous metal scaffolds play an important role in the orthopedic field, due to their wide
applications in prostheses implantation. Some previous studies showed that the scaffolds …

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

Y Wu, J Liu, L Kang, J Tian, X Zhang, J Hu, Y Huang… - Heliyon, 2023 - cell.com
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 …