| Cheung et al., “Growth of Osteoblasts on Porous Calcium Phosphate Ceramic: An in Vitro Model for Biocompatibility Study”, Biomaterials, 1989, 10, 63-67. |
| Cheung et al., “In Vitro Cartilage Formation on Porous Hydroxyapatite Ceramic Granules”, In Vitro Cellular and Developmental Biology, 1985, 21(6), 353-357. |
| Davies, J.E., ed. “Preface” in “The Bone-Material Interface”, University of Toronto Press, 1991. |
| Davies et al., “Early Extracellular Matrix Synthesis by Bone Cells”, Bone-Biomaterials Workshop, Davies, J.E., ed., University of Toronto Press, Dec., 1990, 214-228. |
| Ducheyne et al., “The Effect of Plasma-Sprayed Calcium Phosphate Ceramic Coatings on the Metal Ion Release from Porous Titanium and a Cobalt-Chromium Alloys”, J. Biomedical Materials Res., 1988, 22, 1137-1163. |
| Ducheyne et al., “Bioglass Coatings and Bioglass Composites as Implant Materials”, J. Biomedical Materials Res., 1985, 19, 273-291. |
| Greenlee et al., “Glass-Ceramic Bone Implants”, J. Biomed. Mat. Res., 1972, 6, 235-244. |
| Gregoire et al., “The Influence of Calcium Phosphate Biomaterials on Human Bone Cell Activities: an In Vitro Approach”, J. Biomed. Mat. Res., 1990, 24, 165-177. |
| Gross et al., J. Biomedical Materials Res., 1985, 19, 251-271. |
| Hench et al., “Bonding Mechanisms at the Interface of Ceramic Prosthetic Materials”, J. Biomed. Mat. Res. Symp., 1972, 2, 117-141. |
| Hyakuna et al., “The Influence of Calcium Phosphate Ceramics and Glass Ceramics on Cultured Cells and Their Surrounding Media”, J. Biomed. Mat. Res., 1989, 23, 1049-1066. |
| Kim et al., “Early Stages of Calcium Phosphate Layer Formation in Bioglass”, J. Non-Crystal Solids, 1989, 113, 195-202. |
| Koeneman et al., “Workshop on Characteriszation of Calcium Phosphate Materials”, J. Applied Biomaterials, 1990, 1, 79-90. |
| Kokubo et al., “Solutions Able to Reproduce in Vivo Surface-Structure Changes in bioactive Glass-Ceramic A-W3”, J. Biomed. Mat. Res., 1990, 24, 721-734. |
| Kokubo, T. et al., “Ca,P-rich Layer Formed on High-strength Bioactive Glass-ceramic A-W”, J. Biomed. Mater. Res., 1990, 24(3), 331-343. |
| Lowenberg et al., “Mineralized Matrix Production by Osteoblasts on Solid Titanium in Vitro”, Cells & Materials, 1991, 1(2), 177-187. |
| Lowry et al., “The Quantitative Histochemistry of the Brain. II. Enzyme Measurements”, J. Biol. Chem., 1954, 207, 19-37. |
| Maniatopoulos et al., “Bone Formation in Vitro by Stromal Cells Obtained from Bone Marrow of Young Adult Rats”, Cell Tissue Res., 1988, 254, 317-330. |
| Matsuda et al,. “The In Vitro Response of Osteoblasts to Bioactive Glass”, Biomaterials, 1987, 8, 275-284. |
| Ohgushi et al., “Osteogenic Capacity of Rat and Human Marrow Cells in Porous Ceramics”, Acta ortho. Scand., 1990, 61(5), 431-434. |
| Ohgushi et al., “Heterotopic Osteogenesis in Porous Ceramics Induced by Marrow Cells”, J. Ortho. Res., 1989, 7, 568-578. |
| Ohtsuki et al., “Apatite Formation on the Surface of Ceravital-type Glass-ceramic in the Body”, J. Biomedical Mat. Res., 1991, 25, 1363-1370. |
| Orly et al., “Effect of Synthetic Calcium Phosphate on the 3-Thymidine Incorporation and Alkaline Phosphatase Activity of Human Fibroblasts in Culture”, J. Biomed. Mat. Res., 1989, 23, 1433-1440. |
| Puleo et al,. “Osteoblast Responses to Orthopaedic Implant Materials in Vitro”, J. Biomed. Mat. Res., 1991, 25, 711-723. |
| Schepers et al., “Bioactive Glass Particles on Narrow Size Range: A New Material for the Repair of Bone Defects”, Implant Dent., 1993, 2, 151-156. |
| Schepers et al., “Bioactive Glass Particulate Material as a Filler for Bone Lesions”, J. Oral Rehabilitation, 1991, 8, 439-452. |
| Uchida et al., “Growth of Bone Marrow Cells on Porous Ceramics in Vitro”, J. Biomed. Mat. Res., 1987, 21, 1-10. |
| Vrouwenvelder et al., “Better Histology and Biochemistry for Osteoblasts Cultured on Titanium-Doped Bioactive Glass: Bioglass 45S5 Compared with Iron-, Titanium-, Fluorin- and Boron-Containing Bioactive Glasses”, Biomaterials, 1994, 15(2), 97-106. |
| Vrouwenvelder et al., “Behaviour of Fetal Rat Osteoblasts Cultured In Vitro on Bioactive Glass and Nonreactive Glasses”, Biomaterials, 1992, 13(6), 382-392. |
| Vrouwenvelder et al., “Histological and Biochemical Evaluation of Osteoblasts, Cultured on Bioactive Glass, Hydroxylapatite, Titanium Alloy, and Stainless Steel”, J. Biomed. Mat. Res., 1993, 27, 465-475. |
| Brook et al., Biomaterials, 1991, 12, 179-186. |
| Griffiths in “Animal Cell Culture: A Practical Approach”, Freshey, ed., IRL PRess, 1986, pp. 39-41. |
| Freshney et al., “Animal Cell Culture a Practical Approach,”Freshner, R.I. (ed), IRL Press, Oxford, 1986. |
| Cannas et al., “Bioimplant Surfaces: Binding of Fibronectin and Fibroblast Adhesion”, J. Orthop. Res., 1988, 6, 58-62. |
| El-Ghannam, A. et al., “Bioactive Material Template for in vitro Synthesis of Bone”,J. Biomed. Mat. Res., 1995, 29, 359-370. |
| El-Ghannam, A. et al., “Serum Protein Adsorption on Bioactive Ceramics and Glasses and the Effect on Osteoblast Adhesion”, 21st Annual Meeting of the Society for Biomaterials, Mar. 18-22, 1995, San Francisco, CA. |
| Garcia, A. and Ducheyne, “A Spinning Disk Drive Device to Examine Receptor-Mediated Cell Attachment to Bioactive and Surface-Reactive Materials”, 2nd International Conference on Cellular Engineering, La Jolla, CA, Aug., 1995. |
| Grinnell, F. and Feld, “Adsorption Characteristics of Plasma Fibronectin in Relationship to Biological Activity”, J. Biomed. Mat. Res., 1981,15, 363-381. |
| Hammer et al., “A Dynamic Model for Receptor Mediated Cell Adhesion to Surfaces”, Biophys. J., 1987, 52, 475-487. |
| Hynes, R.O., “Intergrins: Versatility, Modulation and Signaling in Cell Adhesion”, Cell, 1992, 69, 11-25. |
| Hynes, “Fibronectins”, Springer Verlag, New York, 1990. |
| Levich, F.G., “Physicochemical Hydrodynamics”, Prentice Hall, Englewood Cliffs, NJ, 1962. |
| Parsons et al., “In Vivo Evaluation of Anorganic Bovine HA with Adsorbed Bioactive Synthetic Peptides”, The 20th Annual Meeting of the Society for Biomaterials, Apr. 5-9, 1994, Boston, MA, p. 125. |
| Seitz et al., “Effect of Fibronectin on the Adhesion of an Established Cell Line to a Surface Reactive Biomaterial”, J. Biomed. Mat. Res. 1982, 16, 195-207. |
| Suzenik, C.N. et al., “Modulation of cell adhesion by modification of titanium surfaces with covalently attached self-assembled monolayers”, J. Biomed. Mat. Res., 1990, 24, 1307-1323. |