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Biomaterials|December 30, 1999
Bioactive ceramics: the effect of surface reactivity on bone formation and bone cell functionP Ducheyne, Q QiuTissue Engineering|September 7, 2001
Formation and differentiation of three-dimensional rat marrow stromal cell culture on microcarriers in a rotating-wall vesselQ Qiu, P Ducheyne, H Gao, et al.In Vitro Cellular & Developmental Biology. Animal|May 24, 2001
3D bone tissue engineered with bioactive microspheres in simulated microgravityQ Q Qiu, P Ducheyne, P S AyyaswamyJournal of Biomedical Materials Research|July 25, 2000
New bioactive, degradable composite microspheres as tissue engineering substratesQ Q Qiu, P Ducheyne, P S AyyaswamyBiomaterials|June 23, 1999
Fabrication, characterization and evaluation of bioceramic hollow microspheres used as microcarriers for 3-D bone tissue formation in rotating bioreactorsQ Q Qiu, P Ducheyne, P S AyyaswamyBiomaterials|July 1, 1983
In vitro corrosion study of porous metal fibre coatings for bone ingrowthP DucheyneJournal of Biomedical Materials Research|March 1, 1985
Bioglass coatings and bioglass composites as implant materialsP DucheyneJournal of Biomedical Materials Research|April 1, 1994
Effect of a change in interfacial geometry on the fatigue strength of porous-coated Ti-6A1-4VD Wolfarth, P DucheyneJournal of Biomedical Materials Research|December 1, 1993
Effect of porous coating geometry on interfacial stress under a shear loadD Wolfarth, P DucheyneJournal of Biomedical Materials Research|July 11, 1998
Quasi-biological apatite film induced by titanium in a simulated body fluidP Li, P DucheynePageof 37