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Author Title Type [ Year] Filters: Keyword is hydroxyapatite and Author is Barbosa, M.A. [Clear All Filters]
Characterization of polymeric solutions as injectable vehicles for hydroxyapatite microspheres. AAPS PharmSciTechAAPS PharmSciTech, 11(2), 852 - 858.
(2010). Morphology and mechanical properties of injectable ceramic microspheres. Key Engineering MaterialsKey Eng Mat (Vol. 396-398, pp. 691 - 694).
(2009). Injectability of a bone filler system based on hydroxyapatite microspheres and a vehicle with in situ gel-forming ability. Journal of Biomedical Materials Research - Part B Applied BiomaterialsJ. Biomed. Mater. Res. Part B Appl. Biomater., 87(1), 49 - 58.
(2008). Characterization of hydroxyapatite sputtered films doped with titanium. Key Engineering MaterialsKey Eng Mat (Vol. 330-332 I, pp. 649 - 652).
(2007). Calcium phosphate microspheres for localised delivery of a therapeutic enzyme. Key Engineering MaterialsKey Eng Mat (Vol. 309-311 II, pp. 903 - 906).
(2006). The uptake of titanium ions by hydroxyapatite particles - Structural changes and possible mechanisms. BiomaterialsBiomaterials, 27(9), 1749 - 1761.
(2006). Effect of calcium phosphate addition to alginate microspheres: modulation of enzyme release kinetics and improvement of cell adhesion. Key Engineering MaterialsKey Eng Mat (Vol. 284-286, pp. 689 - 692).
(2005). Mineralization of regenerated cellulose hydrogels induced by human bone marrow stromal cells. European Cells and MaterialsEur. Cells and Mater., 10, 31 - 39.
(2005). Calcium phosphate-alginate microspheres as enzyme delivery matrices. BiomaterialsBiomaterials, 25(18), 4363 - 4373.
(2004). Affinity of hydroxyapatite to metal cations - a study on the composition and structure of phosphates formed in the presence of titanium and aluminum. Key Engineering MaterialsKey Eng Mat, 192-195(Uetikon-Zuerich, Switzerland), 55 - 58.
(2001). Mineralization of regenerated cellulose hydrogels. Journal of Materials Science: Materials in MedicineJ. Mater. Sci. Mater. Med., 12(9), 785 - 791.
(2001). Influence of substrate material and surface finishing on the morphology of the calcium-phosphate coating. Journal of Biomedical Materials ResearchJ. BIOMED. MATER. RES., 36(1New York, NY, United States), 85 - 90.
(1997). Investigation of the dissolution of the bioceramic hydroxyapatite in the presence of titanium ions using ToF-SIMS and XPS. BiomaterialsBIOMATERIALS, 18(4Oxford, United Kingdom), 311 - 316.
(1997). Effect of hydroxyapatite thickness on metal ion release from Ti6Al4V substrates. BiomaterialsBIOMATERIALS, 17(4Oxford, United Kingdom), 397 - 404.
(1996). The effect of hydroxyapatite thickness on metal ion release from stainless steel substrates. Journal of Materials Science: Materials in MedicineJ. MATER. SCI. MATER. MED., 6(12London, United Kingdom), 818 - 823.
(1995). Modifications in the molecular structure of hydroxyapatite induced by titanium ions. Journal of Materials Science: Materials in MedicineJ. MATER. SCI. MATER. MED., 6(12London, United Kingdom), 829 - 834.
(1995).