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Titlebook: Degradation of Implant Materials; Noam Eliaz Book 2012 Springer Science+Business Media New York 2012 Tribocorrosion.biomaterials.biomedici

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Heike Herrmann,Carsten Keller,Renate Ruhneas material porosity, surface defects, and protein adsorption. This chapter investigates the mechanisms of implant calcification and discusses anti-calcification strategies, using specific medical devices as examples.
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,Natürlich vorkommende Glykoside,echanical analyses, and histological analysis of the tissues surrounding the implant can provide us with information not available through other sources. This chapter will review the significance of retrieved implants to the long-term survival of these implants.
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Mit Anerkennung zu dauerhaftem Erfolgthe toxicity of nanoscale implant materials either after production or implantation) are summarized. Prior to that discussion, host responses to implant materials and properties of nanomaterials pertinent to their altered biological responses are introduced.
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, Aging and Corrosion Aspects of Dental Implants,l conditions and galvanic phenomena that may be triggered by the presence of implant-retained superstructures made of precious and base alloys or other metallic materials which are used in restorative dentistry.
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Fundamentals of Tribology and the Use of Ferrography and Bio-Ferrography for Monitoring the Degradan osteoarthritic joints is reviewed. Artificial joints and the use of Ferrography and Bio-Ferrography for monitoring their wear, either during the development stage or during service, are also reviewed. The concept of soft bearing materials is presented.
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Fatigue Failure of Materials for Medical Devices, properties of fatigue fracture resistance and hard, but brittle, phases required for wear resistance and a good lubrication phase seems to provide some future direction. The ability to engineer biomaterials that have the capability to trap/isolate wear debris and promote easy removal of such wear debris remains a challenge.
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Biomaterial Calcification: Mechanisms and Prevention,as material porosity, surface defects, and protein adsorption. This chapter investigates the mechanisms of implant calcification and discusses anti-calcification strategies, using specific medical devices as examples.
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Orthopedic Implant Retrieval and Failure Analysis,echanical analyses, and histological analysis of the tissues surrounding the implant can provide us with information not available through other sources. This chapter will review the significance of retrieved implants to the long-term survival of these implants.
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