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Download PDF by : Bioceramics: Materials and Applications V, Volume 164

This complaints contains papers on ceramics and glasses utilized in biomedical, dental and organic purposes, together with biomimetics and typical bioceramic fabrics. subject matters comprise: fabrics; purposes; biomimetic fabrics and synthesis; structure/properties of ordinary ceramic-based fabrics; habit in organic environments; and synthesis, processing, characterization, and properties.Content:

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The hydration after deposition produces increased bonding to the substrate, better mechanical integrity of the coating, and built up a better bond to the bone tissue. When a coated implant is positioned in a bone cavity a mass increase will take place due to reactions with water in the body fluid. Instead of initial point contacts, the mass increase leads to enlarged contact zones, including formation of apatite towards the tissue. Thereby a coating system of the same principles as today's hydroxyapatite coatings is produced, but characterised by a higher degree in-vivo materials formation leading to higher reliability, early loading characteristics and reduced risk of loosening over time.

Westergârd, N. Axén, H. Howthorn, S. Hogmark, Cohesion in plasmasprayed coatings - a comparison between evaluation methods, Wear 214 (1998) 30-37. l2 J. Samachson, Nature 1968; 218:1261. 34 • Bioceramics: Materials and Applications V Bioceramics: Materials and Applications V Edited by Veeraraghavan (V) Sundar, Richard P. Rusin and Claire A. Rutiser Copyright © 2005. The American Ceramic Society Dental Materials and Applications Bioceramics: Materials and Applications V Edited by Veeraraghavan (V) Sundar, Richard P.

For successful implantation early stabilisation is crucial. Even small gaps may lead to relative movements, micro-motions, between implant and the tissue, which increases the risk of implant loosening over time due to formation of zones of fibrous tissues at the implant-tissue interface. Production of wear debris and mismatch of elastic modulus are other reasons to failed implantation [1]. One relatively established method to reduce the problem with poor interfacial stability for implants, is surface coatings technology.

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