Biomaterials in Orthopedics by Michael J. Yaszemski

By Michael J. Yaszemski

Subject matters contain biocompatibility and the biomaterial/tissue interface. Discusses bioabsorbable biomaterials for bone fix, nondegradable fabrics in orthopaedics, and supply structures.

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Biomaterials 2002; 23:3341–3346. 57. von Knoch M, Engh CA, Sychterz CJ, Engh CA, Willert HG. Migration of polyethylene wear debris in one type of uncemented femoral component with circumferential porous coating. J. Arthroplasty 2000; 15:72–78. 58. Nanci A, Wuest JD, Peru L, Brunet P, Sharma V, Zalzal S, McKee MD. Chemical modification of titanium surfaces for covalent attachment of biological molecules. J. Biomed. Mater. Res 1998; 40:324–335. 59. Viorney C, Guenther HL, Aronsson BO, Pechy P, Descouts P, Gratzel M.

Hard Tissue–Biomaterial Interactions 31 5. Shah AK, Sinha RK, Hickok NJ, Tuan RS. High-resolution morphometric analysis of human osteoblastic cell adhesion on clinically relevant orthopedic allyos. Bone 1999; 24:499–506. 6. Gronowicz G, McCarthy MB. Response of human osteoblasts to implant materials: integrin-mediated adhesion. J. Orthop. Res 1996; 14:878–887. 7. Kurachi T, Nagao H, Nagura H, Enomoto S. Effect of titanium surface on bone marrow–derived osteoblastic cells in vitro. Arch. Oral Biol 1997; 42:465–468.

Orthop. Trauma Surg 1998; 118:149–155. ¨ nblad M, Partio E, Kemppinen P, Rokkanen P. Immune 181. Santavirta S, Konttinen YT, Saito T, GrO response to polyglycolic acid implants. J. Bone Joint Surg 1990; 72-B:597–600. 182. Wake MC, Gerecht PD, Lu L, Mikos AG. Effects of biodegradable polymer particles on rat marrow–derived stromal osteoblasts in vitro. Biomaterials 1998; 19:1255–1268. 183. Burkhart SS. The evolution of clinical applications of biodegradable implants in arthroscopic surgery. Biomaterials 2000; 21:2631–2634.

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