Annals of NY Academy of Sciences, vol. 523, Jun. 10, 1988, “Mechanical and Bone Ingrowth Properties of a Polymer-Coated, Porous, Synthetic, Coralline Hydroxyapatite Bone-Graft Materiala,” pp. 157-172, A.F. Tencer, P.L. Woodard, J. Swenson and K.L. Brown. |
Aksaci, D., et al., “Porous Fluorapatite/Spinel Osteoceramic For Bone Bridges”, Phosphorus: Studies in. |
McGee, Thomas D., et al., “General Requirements for a Successful Orthopedic Implant”, pp. 69-82. |
Ito, Kuniomi, et al., Osteogenic Activity of Synthetic Hydroxylapatite With Controlled Texture-on the. |
Johnson, Kenneth D., et al., “Porous Ceramics as Bone Graft Substitutes in Long Bone Defects . . . ”, J. |
“Bone Grafts and Bone Substitutes”, Orthopedic Network News, vol. 6, No. 4, Oct. 1995, pp. 7-9. |
Constantz, Brent R., et al., “Skeletal Repair by in Situ Formation of the Mineral Phase of Bone”. |
Chaki, T.K., et al, “Strengthening Behavior of Hydroxyapatite-Silver Composite”, Bioceramics:. |
Damien, C., et al., Bone Graft and Bone Graft Substitutes: A Review of Current Technology and. |
Ioku, Koji, et al., “Dense/porous Layered Apatite Ceramics Prepared by HIP Post-sintering”, J. Mat. |
Wu, Jenn-Ming, et al., “Sintering of Hydroxylapatite-zirconia Composite Materials”, J. Mat. Science,. |
Li, J., et al., “High-strength biofunctional zirconia: mechanical properties and static fatigue behavior of zirconic-apatite composites”, J. Bio. Sci. Mat., 1993, pp. 50-54. |
Suda, Akio, et al. “Biocompatibility of Zirconia Dispersed Hydroxyapatite Ceramics”, J. Jap. Orthop. Assoc., vol. 64, pp. 249-258. |
Takaoka, Kunio, et al. “Ectopic Bone Induction on and in Porous Hydroxyapatite Combined with Collagen and Bone Morphogenetic Protein”, Clinical Orthopedics, No. 234, Sep. 1988, pp. 250-254. |
Mattioli-Belmonte, et al., “Osteoinduction in the Presence of Chitosan-Coated Porous Hydroxyapatite”, J. Bio. Comp. Poly., vol. 10. Jul. 1995, pp. 249-257. |
Wan, Andrew et al., “Hydroxyapatite Modified Chitin as Potential Hard Tissue Substitute Material”, J. Bio. Mat. Res., [38] 3 (1997), pp. 235-241. |
Zhang, Qi-Qing, “Porous Hydroxyapatite Reinforced with Collagen Protein”, Marcel Dekker, Ine., 1996, pp. 693-702. |
Gao, T., et al. “Enhanced healing of segmental tibial defects in sheep by a composite bone substitute composed of tricalcium phosphate cylinder, bon . . . ”, J. Bio. Mat. Res., vol. 32 (1996) pp. 505-512. |
Verheyen et al., “Hydroxyapatite/poly (L-lactide) composites: An animal study on push-out strengths and interface histology”, J. Bio. Mat. Res., vol. 27, (1993), pp. 433-444. |
TenHuisen, K., et al., “Formation and properties of a synthetic bone composite: Hydroxyapatite-collagen”, J. Bio. Mat. Res., vol. 29, (1995), pp. 803-810. |
Muller-Mai, C., et al., “nanoapatite and organoapatite implants in bone: Histology and ultrastructure of the interface”, J. Bio. Mat. Res. vol. 29, (1995), pp. 9-18. |
Tian, Y., A Novel Chondrocyte-Seeded Hydroxyapatite-Collagen Scaffold for Cartilage. |