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    Numerical analysis of the effect of implant geometry to stress distributions of dental implant system
    (University of Utah, 2013-04) Adin, Hamit; Topkaya, Tolga; Solmaz, Murat Yavuz; Dündar, Serkan
    In accordance with the increase in their success rate, dental implants have become a popular treatment option for missing teeth. In long-term clinical application, the survival rate for dental implants is over 90% [1,2]. In general, the success of dental implants is related to the quality and quantity of local bones, implant design and surgical technique. Implant diameter and length are accepted as key factors [3,4]. Present work focuses to investigate the effect of titanium implant geometry to stress distributions around mandible and implant system. For this purpose three different implant models which are currently being used in clinical cases constructed by using ANSYS Workbench 12.1. The stress distributions on components of implant system and mandible under static loading were analyzed for all models