By I. C. Clarke, M. Manaka, T. Shishido, H. Oonishi, G. A. Gustafson, M. Boehler (auth.), Hartmut Zippel, Martin Dietrich (eds.)
Dear Colleague and player of Bioceramics in Joint Arthroplasty 8'h Biolox" Symposium it's a excitement for us on the way to current you with the lawsuits of this Symposium. this is often whatever that we're very happy with, because it is the 1st time that we've got been in a position to in achieving our aim of dispensing this selection of all shows made at this Symposium in a published shape at the moment. The fulfillment of this aim used to be reached in nice half as a result of very good cooperation of all the audio system in addition to the dedication of the publishing residence to help us in each method attainable to satisfy the stern time cut-off dates imposed. also, a unique thank you should also accept to a few very distinctive those who diligently labored to ensure our target was once met. they're: Gertrud Volkert. M. D. and Petra Elster of the Steinkopff Verlag Publishing corporation and our personal Symposium Administrator, Hedi Kissinger. We think that you'll locate this ebook to be a worthwhile and necessary addition on your reference library. we are hoping that inside its covers, you'll find the freshest medical and medical information about using ceramic options to deal with put on similar difficulties in Orthopedic Surgery.
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Extra resources for Bioceramics in Joint Arthroplasty: 8th BIOLOX® Symposium Berlin, March 28–29, 2003 Proceedings
Harris WH (1992) Peri prosthetic bone loss in total hip arthroplasty: The role of polyethylene and the concept of the effective joint space. J Bone Joint Surg 74-A:849-856. Basics of Ceramic Components in Hip Arthroplasty 20. Walter A (1997) Investiga tions on the Wear Couple Bio lox®forte/Biolox®forte and Earlier Alumino Materials. In: Pfuhl W (edi tor) Per formanc e o f the Wear Couple Biolox"forte in Hip Arthroplasty - Proc 2nd Symposium on Ceramic Wear Couple. Enke : 123- 135 21. Wong A, Essner A, Stark C, Dumble ton JH (1996) Comparison of the size and morpho logy o f UHMWPE wear d ebris produced by a hip joint simulator under serum and water lubricated conditions.
Although initial results were promising, radiolucency and cup migration presented a problem . The main reason for these observations were poor osseointegration and the development of a fibrous interface [7J. Other factors included the use of skirted heads and the high stiffness gradient at the boneimplant interface. These findings led to the development of modular designs using a titanium or CoCrMo shell for fixation to the bone and a ceramic insert for the articulation. In addition to the markedly improved potential for osseo-integration, these modular designs have several advantages including the choice of various bearing options for one shell and the possibility to exchange the insert without removal of the shell after osseo-integration has taken place.
21O[H]: 157-165 3. Catelas I. Petit A. Zukor DJ. et al. (1999) Induction of macrophage apoptosis by ceramic and polyethylene particles in vitro. Biomaterials 20:625-630 4. Clark IC (1981) Wear of artificial joint materials: IV hip joint simulator studies. Engng in Medicine. 10(4):189-198 5. Draft International Standard (2002) Wear of implant materials - Polymer and metal wear particles - Isolation. characterization and quantification. ISO/ DIS 17853 6. Ingham E. Fisher J (2000) Biological reactions to wear debris in total joint re-placement.
Bioceramics in Joint Arthroplasty: 8th BIOLOX® Symposium Berlin, March 28–29, 2003 Proceedings by I. C. Clarke, M. Manaka, T. Shishido, H. Oonishi, G. A. Gustafson, M. Boehler (auth.), Hartmut Zippel, Martin Dietrich (eds.)