3D Printing of Biomaterials for Control of Cellular Behaviors
Author:
Affiliation:
1. Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
Publisher
Sumart Processing Society for Minerals, Environment and Energy
Link
https://www.jstage.jst.go.jp/article/jspmee/9/4/9_164/_pdf
Reference39 articles.
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2. 石本卓也:“ 骨への応力遮蔽低減のためのAdditive Manufacturing プロセスによるβ型チタン合金の組織制御”, スマートプロセス学会誌,8-4(2019), 119-123.
3. T. Ishimoto, K. Hagihara, K. Hisamoto, S-H. Sun and T. Nakano: “Crystallographic texture control of beta-type Ti-15Mo-5Zr- 3Al alloy by selective laser melting for the development of novel implants with a biocompatible low Young's modulus”, Scripta Materialia, 132(2017), 34-38.
4. T. Nakano, K. Kaibara, Y. Tabata, N. Nagata, S. Enomoto, E. Marukawa et al.: “Unique alignment and texture of biological apatite crystallites in typical calcified tissues analyzed by microbeam x-ray diffractometer system”, Bone, 31-4(2002), 479-487.
5. T. Nakano, K. Kaibara, T. Ishimoto, Y. Tabata and Y. Umakoshi: “Biological apatite(BAp)crystallographic orientation and texture as a new index for assessing the microstructure and function of bone regenerated by tissue engineering”, Bone, 51-4(2012), 741-747.
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