| Literature DB >> 21231868 |
Luis Carlos Merson Vargas, Erika Oliveira de Almeida, Eduardo Passos Rocha, Sidney Kina, Rodolfo Bruniera Anchieta, Amílcar Chagas Freitas Júnior, Fabiana Mantovani Gomes França.
Abstract
The aim of this study was to evaluate stress distribution of the peri-implant bone by simulating the biomechanical influence of implants with different diameters of regular or platform switched connections by means of 3-dimensional finite element analysis. Five mathematical models of an implant-supported central incisor were created by varying the diameter (5.5 and 4.5 mm, internal hexagon) and abutment platform (regular and platform switched). For the cortical bone, the highest stress values (σmax and σvm) were observed in situation R1, followed by situations S1, R2, S3, and S2. For the trabecular bone, the highest stress values (σmax) were observed in situation S3, followed by situations R1, S1, R2, and S2. The influence of platform switching was more evident for cortical bone than for trabecular bone and was mainly seen in large platform diameter reduction.Entities:
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Year: 2011 PMID: 21231868 DOI: 10.1563/AAID-JOI-D-10-00157
Source DB: PubMed Journal: J Oral Implantol ISSN: 0160-6972 Impact factor: 1.779