By Hartmuth Kiefer M.D., PHD (auth.), Jun-Dong Chang M.D., Karl Billau (eds.)
th ® expensive Colleague and player of the 12 overseas BIOLOX Symposium ® it truly is an honor for CeramTec to have the BIOLOX Symposium in Asia. the choice of Seoul, Korea because the website was once a tough one considering the fact that there are numerous fabulous place suggestions during this dynamic and quickly becoming area of the realm. the choice used to be made more uncomplicated by way of the phenomenal aid of our Symposium Chairman, Prof. Chang, in addition to the wonderful airline provider and assembly amenities found in Seoul. we are hoping that engaging in the Symposium during this zone will function a starting place for the elevated attractiveness of the aptitude sufferer advantages to be derived from using ceramics and different substitute bearing applied sciences in Korea, China, India, Japan and the remainder of the international locations of the quarter. we're confident that the prime quality of this system prepared by means of the clinical committee, the distinguished school assembled and your contributions as members will function a catalyst as a way to make this Symposium a really enlightening and worthy own adventure for all. which will improve the worth of the event we're happy to incorporate this lawsuits publication as an essential component of your registration fabrics. we are hoping that this written extra entire model of the medical software will let you hold domestic a extra concise view of the Symposium presentations.
Read Online or Download Bioceramics and Alternative Bearings in Joint Arthroplasty: 12th BIOLOX® Symposium Seoul, Republic of Korea September 7 – 8, 2007 Proceedings PDF
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Extra resources for Bioceramics and Alternative Bearings in Joint Arthroplasty: 12th BIOLOX® Symposium Seoul, Republic of Korea September 7 – 8, 2007 Proceedings
J Bone Joint Surg Am 79: 349-358, 1997. 19. Jazrawi LM, Kummer FJ and DiCesare PE. Alternative bearing surfaces for total joint arthroplasty. J Am Acad Orthop Surg 6: 198-203, 1998. Tribology 10. Joshi AB, Markovic L and Ilchmann T. Polyethylene wear and calcar osteolysis. Am J Orthop 28: 45-48, 1999. 11. Livermore J, Ilstrup D and Morrey B. Effect of femoral head size on wear of the polyethylene acetabular component. J Bone Joint Surg Am 72: 518-528, 1990. 12. Martell J, Berkson E, Berger R and Jacobs J.
Sculco and E. A. Salvati Wear-generated particulate debris is the main cause of initiating this destructive process. We present recent advances in understanding of how wear debris causes osteolysis in the aspect of cellular and molecular biological levels. Macrophages, the most important cellular target for wear debris, respond to particle challenge in two distinct ways of pro-inflammatory signaling and inhibition of the protective actions of anti-osteoclastogenic cytokines, finally leading to suppression of osteogenic activity as well as increased osteoclast activity.
Curr Mol Med, 1, 589-95. 46. Palmbos PL, Sytsma MJ, DeHeer DH, Bonnema JD  Macrophage exposure to particulate titanium induces phosphorylation of the protein tyrosine kinase lyn and the phospholipases Cgamma-1 and Cgamma-2. J Orthop Res, 20, 483-9. Tribology 47. Pioletti DP, Leoni L, Genini D, Takei H, Du P, Corbeil J  Gene expression analysis of osteoblastic cells contacted by orthopedic implant particles. J Biomed Mater Res, 61, 408-20. 48. Purdue PE, Koulouvaris P, Potter HG, Nestor BJ, Sculco TP  The cellular and molecular biology of periprosthetic osteolysis.