Biomedical Engineering Reference
In-Depth Information
12. Cochran , D. L. , Schenk , R. K. , Lussi , A. , Higginbottom , F. L. and Buser , D. , Bone
response to unloaded and loaded titanium implants with a sandblasted and
acid-etched surface: a histometric study in the canine mandible, J. Biomed. Mater.
Res. , volume: 40 , 1998 , pp. 1 - 11 .
13. Wennerberg , A. , Hallgren , C. , Johansson , C. and Danelli , S. , A histomorphometric
evaluation of screw-shaped implants each prepared with two surface roughnesses,
Clin. Oral Implants Res. , volume: 9 , 1998 , pp. 11 - 19 .
14. Webster , T. J. , Siegel , R. W. and Bizios , R. , Osteoblast adhesion on nanophase ce-
ramics , Biomaterials , volume: 20 , 1999 , pp. 1221 - 1227 .
15. Webster , T. J. , Siegel , R. W. and Bizios , R. , Design and evaluation of nanophase
alumina for orthopaedic/dental applications, Nanostructured Materials , volume: 12 ,
1999 , pp. 983 - 986 .
16. Webster , T. J. , Siegel , R. W. and Bizios , R. , Specifi c proteins mediate osteoblast
adhesion on nanophase ceramics, J. Biomed. Mater. Res. , volume: 51 , 2000 , pp. 475 -
483 .
17. Webster , T. J. and Ejiofor , J. U. , Increased osteoblast adhesion on nanophase metals:
Ti, Ti6Al4V, and CoCrMo, Biomaterials , volume: 25 , 2004 , pp. 4731 - 4739 .
18. Kaplan , F. S. , Hayes , W. C. , Keaveny , T. M. , Boskey , A. , Einhorn , T. A. and Iannotti ,
J. P. , Form and function of bone. Orthopedic basic science , pp. 127 - 185 , S. P. Sinmon ,
(eds.). American Academy of Orthopaedic Surgeons , 1994 .
19. Castner , D. G. and Ratner , B. D. , Biomedical surface science: Foundations to fron-
tiers , Surface Science , volume: 500 , 2002 , pp. 28 - 60 .
20. Chun , A. L. , Helical Rosette Nanotubes: An investigation towards its application in
orthopaedics, Purdue university (thesis), May 2006.
21. Hayakawa , T. , Yoshinari , M. , Kiba , H. , Yamamoto , H. , Nemoto , K. and Jansen , J. A. ,
Trabecular bone response to surface roughened and calcium phosphate (Ca-P)
coated titanium implants, Biomaterials , volume: 23 , 2002 , pp. 1025 - 1031 .
22. Meyer , U. , Wiesmann , H. P. , Fillies , T. and Joos , U. , Early tissue reaction at the in-
terface of immediately loaded dental implants, Int. J. Oral Maxillofac Implants , vol-
ume: 18 , 2003 , pp. 489 - 499 .
23. Gu ' ehennec , L. L. , Soueidan , A. , Layrolle , P. and Amouriq , Y. , Surface treatments
of titanium dental implants for rapid osseointegration, Dental Materials , 2006 ,
doi:10.1016/j.dental
24. Loosening & Osteolysis: Osteolysis (Aseptic Loosening), AAOS online.
25. Hanson , S. R. , Lalor , P. A. , Niemi , S. M. , Northup , S. J. , Ratner , B. D. and Spector ,
M. , et al., Testing biomaterials . pp. 221 . Biomaterials science: An introduction to ma-
terials and medicine , B. D. Ratner , A. S. Hoffman , F. J. Schoen , J. E. Lemons , (eds.).
New York : Academic Press.
26. Zhu , Y. H. , Chiu , K. Y. and Tang , W. M. , Review article: polyethylene wear and
osteolysis in total hip arthroplasty, Journal of Orthopaedic Surgery , volume: 9 , num-
ber: 1 , 2001 , pp. 91 - 99 .
27. Harris , W. H. , The problem is osteolysis , Clin. Orthop. , volume: 311 , 1995 , pp. 46 - 53 .
28. David , V. , Jarka , N. and Olga , K. , Periprosthetic osteolysis and its association with
the molecule RANKL expression. Physiological research pre-press article.
29. Bronson , J. G. , Breakthrough technology: searching for artifi cial articular cartilage,
Orthopedic Technology Review , volume: 1 , number: 1 , 1999 .
Search WWH ::




Custom Search