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Advances in the surface modification techniques of bone-related implants for last 10 years
Author(s) -
Zhiye Qiu,
C. Chen,
Xinming Wang,
I.-S. Lee
Publication year - 2014
Publication title -
regenerative biomaterials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.166
H-Index - 25
ISSN - 2056-3426
DOI - 10.1093/rb/rbu007
Subject(s) - surface modification , biocompatibility , nanotechnology , materials science , surface engineering , titanium alloy , titanium , coating , polyethylene , biomedical engineering , alloy , chemistry , metallurgy , composite material , engineering
At the time of implanting bone-related implants into human body, a variety of biological responses to the material surface occur with respect to surface chemistry and physical state. The commonly used biomaterials (e.g. titanium and its alloy, Co-Cr alloy, stainless steel, polyetheretherketone, ultra-high molecular weight polyethylene and various calcium phosphates) have many drawbacks such as lack of biocompatibility and improper mechanical properties. As surface modification is very promising technology to overcome such problems, a variety of surface modification techniques have been being investigated. This review paper covers recent advances in surface modification techniques of bone-related materials including physicochemical coating, radiation grafting, plasma surface engineering, ion beam processing and surface patterning techniques. The contents are organized with different types of techniques to applicable materials, and typical examples are also described.

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