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Journal of Biomedical Materials Research|December 1, 1993
Development of a glass reinforced hydroxyapatite with enhanced mechanical properties. The effect of glass composition on mechanical properties and its relationship to phase changesJ C Knowles, W BonfieldJournal of Materials Science. Materials in Medicine|September 7, 2004
Effect of crosslinking agents on poly(ethylmethacrylate) bone cementsS Deb, M Braden, W BonfieldActa Biomaterialia|August 13, 2009
The role of surface wettability and surface charge of electrosprayed nanoapatites on the behaviour of osteoblastsE S Thian, Z Ahmad, J Huang, et al.Journal of Biomedical Materials Research|January 4, 1998
Effect of crosslinking agents on acrylic bone cements based on poly(methylmethacrylate)S Deb, B Vazquez, W BonfieldJournal of Materials Science. Materials in Medicine|September 7, 2004
Friction and wear of hydroxyapatite reinforced high density polyethylene against the stainless steel counterfaceM Wang, M Chandrasekaran, W BonfieldBiomaterials|January 12, 1999
Hydroxyapatite-polyethylene composites for bone substitution: effects of ceramic particle size and morphologyM Wang, R Joseph, W BonfieldJournal of Biomedical Materials Research. Part A|August 11, 2007
Influence of nanohydroxyapatite patterns deposited by electrohydrodynamic spraying on osteoblast responseE S Thian, J Huang, Z Ahmad, et al.Journal of Biomedical Materials Research. Part A|June 29, 2005
Composition-controlled nanocomposites of apatite and collagen incorporating silicon as an osseopromotive agentA K Lynn, T Nakamura, N Patel, et al.Journal of Biomedical Materials Research|June 26, 1998
Carbonate substitution in precipitated hydroxyapatite: an investigation into the effects of reaction temperature and bicarbonate ion concentrationJ Barralet, S Best, W BonfieldBiomaterials|September 1, 1995
Water absorption characteristics of modified hydroxyapatite bone cementsS Deb, M Braden, W BonfieldPageof 16