Deposition of Hydroxyapatite Onto Superelastic Nitinol Using an Ambient Temperature Blast Coating Process
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanics of Materials,General Materials Science
Link
http://link.springer.com/article/10.1007/s40830-018-0179-7/fulltext.html
Reference41 articles.
1. Clarke B et al (2006) Influence of nitinol wire surface treatment on oxide thickness and composition and its subsequent effect on corrosion resistance and nickel ion release. J Biomed Mater Res Part A 79(1):61–70
2. Pelton AR, Dicello J, Miyazaki S (2000) Optimisation of processing and properties of medical grade Nitinol wire. Minim Invasive Ther Allied Technol 9(2):107–118
3. Haverty D et al (2005) Structure and stability of hydroxyapatite: density functional calculation and Rietveld analysis. Phys Rev B 71(9):094103
4. Geetha M et al (2009) Ti based biomaterials, the ultimate choice for orthopaedic implants–a review. Prog Mater Sci 54(3):397–425
5. Aliağaoğlu C et al (2012) Relation of nickel allergy with in-stent restenosis in patients treated with cobalt chromium stents. Ann Dermatol 24(4):426–429
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1. Functionalization of the Implant Surface Made of NiTi Shape Memory Alloy;Materials;2023-02-15
2. Effect of hydroxyapatite‐titanium‐MWCNTs composite coating fabricated by electrophoretic deposition on corrosion and cellular behavior of NiTi alloy;Materials and Corrosion;2019-06-11
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