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Volumn 33, Issue 5, 2013, Pages 2752-2756
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Hybrid micro/nano-topography of a TiO2 nanotube-coated commercial zirconia femoral knee implant promotes bone cell adhesion in vitro
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Author keywords
Cell adhesion; Orthopedic implant; Osseointegration; Osteoblast; TiO2 nanotube; Zirconia
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Indexed keywords
BONE CELL ADHESION;
IMPLANT MATERIALS;
MATERIAL COATINGS;
NANOTOPOGRAPHIES;
ORTHOPEDIC IMPLANT;
OSSEOINTEGRATION;
OSTEOBLAST CELLS;
TIO;
BONE;
CELL ADHESION;
CELLS;
COATINGS;
DESIGN;
NANOTUBES;
OSTEOBLASTS;
SURFACE TOPOGRAPHY;
SURFACES;
TITANIUM DIOXIDE;
ZIRCONIA;
NANOTUBE;
TITANIUM;
TITANIUM DIOXIDE;
ZIRCONIUM;
ANIMAL;
ARTICLE;
BONE;
CELL ADHESION;
CELL STRAIN 3T3;
CHEMISTRY;
CYTOLOGY;
FEMUR;
HIP PROSTHESIS;
KNEE PROSTHESIS;
MATERIALS TESTING;
MOUSE;
SCANNING ELECTRON MICROSCOPY;
SURFACE PROPERTY;
3T3 CELL LINE;
3T3 CELLS;
ANIMALS;
BONE AND BONES;
CELL ADHESION;
FEMUR;
HIP PROSTHESIS;
KNEE PROSTHESIS;
MATERIALS TESTING;
MICE;
MICROSCOPY, ELECTRON, SCANNING;
NANOTUBES;
SURFACE PROPERTIES;
TITANIUM;
ZIRCONIUM;
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EID: 84876680732
PISSN: 09284931
EISSN: None
Source Type: Journal
DOI: 10.1016/j.msec.2013.02.045 Document Type: Article |
Times cited : (48)
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References (19)
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