Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Cell Proliferation Ability of Mouse Fibroblast-Like Cells and Osteoblast-Like Cells on a Ti-6Al-4V Alloy Film Produced by Selective Laser Melting"
written by Mayu Kawase, Tatsuhide Hayashi, Masaki Asakura, Akimichi Mieki, Hironari Fuyamada, Masahiro Sassa, Shizuka Nakano, Masashi Hagiwara, Toru Shimizu, Tatsushi Kawai,
published by Materials Sciences and Applications, Vol.5 No.7, 2014
has been cited by the following article(s):
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[1] A review on in vitro/in vivo response of additively manufactured Ti-6Al-4V alloy
Journal of Materials …, 2022
[2] Osteoconductivity of bioactive Ti-6Al-4V implants with lattice-shaped interconnected large pores fabricated by electron beam melting
2021
[3] A Review on Powder Bed Fusion Additive Manufacturing for Metallic Fixation Implants
2021
[4] Surface conditioning of additively manufactured titanium implants affects materials properties and in vitro biocompatibility
2020
[5] Corrosion behaviour and cell interaction of Ti-6Al-4V alloy prepared by two techniques of 3D printing
Materials Science and Engineering: C, 2018
[6] Research on Selective Laser Melting of Ti6Al4V: Surface Morphologies, Optimized Processing Zone, and Ductility Improvement Mechanism
Metals, 2018
[7] Fabrication and Characterization of a Resorbable Barrier Membrane Using Silk Fibroin-Fish Collagen Materials
2018
[8] Surface chemistry of Ti6Al4V components fabricated using selective laser melting for biomedical applications
Materials Science and Engineering: C, 2016
[9] A comparison of biocompatibility of a titanium alloy fabricated by electron beam melting and selective laser melting
PLOS ONE, 2016
[10] Proliferation of mouse fibroblast‐like and osteoblast‐like cells on pure titanium films manufactured by electron beam melting
Cell biology international, 2016
[11] Modelling the mesenchymal stem cell niche in vitro using magnetic nanoparticles
2016
[12] The Fabrication of Integrated Strain Sensors for “Smart” Implants using a Direct Write Additive Manufacturing Approach
2015
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