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Metallic powder-bed based 3D printing of cellular scaffolds for orthopaedic implants: A state-of-the-art review on manufacturing, topological design, mechanical properties and biocompatibility
Materials Science and Engineering C · 2017 · Vol. 76 · pp. 1328–1343
Xipeng Tan✉(Nanyang Technological University)Yu Jun Tan(Nanyang Technological University)Cheng-Ming Chow(Nanyang Technological University)Shu Beng Tor(Nanyang Technological University)Wai Yee Yeong(Nanyang Technological University)
Additive Manufacturing and 3D Printing TechnologiesBone Tissue Engineering MaterialsAdditive Manufacturing Materials and ProcessesBiocompatibility3D printingSelective laser meltingMaterials scienceScaffoldBiocompatible materialNanotechnology3d printedBiomedical engineeringMechanical engineering
MeSH terms
HumansOrthopedicsPowdersTitaniumProstheses and ImplantsPrinting, Three-Dimensional
Citations
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References
Effect of pore size on bone ingrowth into porous titanium implants fabricated by additive manufacturing: An in vivo experiment
Materials Science and Engineering C · 2015 · 916 citations
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Acta Biomaterialia · 2015 · 562 citations
The effect of pore geometry on the in vitro biological behavior of human periosteum-derived cells seeded on selective laser-melted Ti6Al4V bone scaffolds
Acta Biomaterialia · 2012 · 753 citations
Titanium alloys in total joint replacement—a materials science perspective
Biomaterials · 1998 · 3,453 citations
The mechanics of three-dimensional cellular materials
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1982 · 1,815 citations
Cellular Ti–6Al–4V structures with interconnected macro porosity for bone implants fabricated by selective electron beam melting
Acta Biomaterialia · 2008 · 806 citations
Fabrication methods of porous metals for use in orthopaedic applications
Biomaterials · 2006 · 1,366 citations
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