Biomedical Engineering Reference
In-Depth Information
19. Nath S, Bodhak S, Basu B. HDPE-Al 2 O 3 -HAp composites for biomedical applications:
processing and characterization. J Biomed Mater Res Part B Appl Biomater 2009;88B:
1-11.
20. Basu B, Balani K. Advanced Structural Ceramics. Hoboken: Wiley; 2011.
21. Mixon M. Getting your nerve back: Dr. Christine Schmidt and her research team
engineer ways to speed nerve regeneration and recovery after injury. http://www.utexas.
edu/features/2011/01/10/nerve_regeneration/ .
22. Ahoki H. Medical Applications for Hydroxyapatite . St. Louis: Ishikayu Euro America;
1994.
23. Eliott JC. Structure and chemistry of the apatites and other calcium-orthophosphates. In:
Studios in Inorganic Chemistry 18. Amsterdam: Elsevier; 1994.
24. Vallet-Reg ı M, Arcos D. Biomimetic nanoceramics in clinical use, RSC. Nanosci
Nanotechnol 2008.
25. Wolff J. The Law of Bone Remodeling. Maquet R, Furlong R, (trans), Berlin: Springer-
Verlag; 1986.
26. http://www.orthosupersite.com/view.aspx?rid ¼ 26900
27. Calandrelli L, Immirzi B, Malinconicon M, Luessenheide S, Passaro I, di Pasquale R,
Oliva A. Natural and synthetic hydroxyapatite filled PCL: mechanical properties and
biocompatibility analysis. J Bioact Compat Polym 2004;19:301-313.
28. Bronzino JD. The Biomedical Engineering Handbook. 2nd ed. Boca Raton, FL: CRC
Press; 2000.
29. S.Salcedo S, Arcos D, Vallet-Regı M. Upgrading calcium phosphate scaffolds for tissue
engineering applications. Key Eng Mater 2008;377:19-42.
30. Gogolewski S. Bioresorbable polymers in trauma and bone surgery. Injury 2000;31
(Suppl 4):28-32.
31. Roy TD, Simon JL, Ricci JL, Rekow ED, Thompson VP, Parsons JR. Performance of
degradable composite bone repair products made via three-dimensional fabrication
techniques. J Biomed Mater Res A 2003;66(2):283-291.
32. Rokkanen P, Bostman O, Vainionpaa S, Makela EA, Hirvensalo E, Partio EK, et al.
Absorbable devices in the fixation of fractures. J Trauma 1996;40(Suppl 3):S123-S127.
33. Coombes AG, Meikle MC. Resorbable synthetic polymers as replacements for bone
graft. Clin Mater 1994;17(1):35-67.
34. Disegi JA, Eschbach L. Stainless steel in bone surgery. Injury 2000;31(Suppl 4):2-6.
35. Meaney DF. Mechanical properties of implantable biomaterials. Clin Podiatr Med Surg
1995;12(3):363-384.
36. Park HK, Dujovny M, Agner C, Diaz FG. Biomechanical properties of calvarium
prosthesis. Neurol Res 2001;23(2-3):267-276.
37. Pohler OE. Unalloyedtitanium for implants in bone surgery. Injury 2000;31(Suppl 4):
7-13.
38. Rah DK. Art of replacing craniofacial bone defects. Yonsei Med J 2000;41(6):756-765.
39. Berven S, Tay BK, Kleinstueck FS, Bradford DS. Clinical applications of bone graft
substitutes in spine surgery: consideration of mineralized and demineralized prepara-
tions and growth factor supplementation. Eur Spine J 2001;10(Suppl 2):S169-S177.
40. Dard M, Sewing A, Meyer J, Verrier S, Roessler S, Scharnweber D. Tools for tissue
engineering of mineralized oral structures. Clin Oral Investig 2000;4(2):126-129.
Search WWH ::




Custom Search