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The Influence of Custom-Milled Framework Design for an Implant-Supported Full-Arch Fixed Dental Prosthesis: 3D-FEA Sudy

The current study aimed to evaluate the mechanical behavior of two different maxillary prosthetic rehabilitations according to the framework design using the Finite Element Analysis. An implant-supported full-arch fixed dental prosthesis was developed using a modeling software. Two conditions were m...

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Autores principales: Tribst, João Paulo Mendes, Dal Piva, Amanda Maria de Oliveira, Lo Giudice, Roberto, Borges, Alexandre Luiz Souto, Bottino, Marco Antonio, Epifania, Ettore, Ausiello, Pietro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7313457/
https://www.ncbi.nlm.nih.gov/pubmed/32517097
http://dx.doi.org/10.3390/ijerph17114040
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author Tribst, João Paulo Mendes
Dal Piva, Amanda Maria de Oliveira
Lo Giudice, Roberto
Borges, Alexandre Luiz Souto
Bottino, Marco Antonio
Epifania, Ettore
Ausiello, Pietro
author_facet Tribst, João Paulo Mendes
Dal Piva, Amanda Maria de Oliveira
Lo Giudice, Roberto
Borges, Alexandre Luiz Souto
Bottino, Marco Antonio
Epifania, Ettore
Ausiello, Pietro
author_sort Tribst, João Paulo Mendes
collection PubMed
description The current study aimed to evaluate the mechanical behavior of two different maxillary prosthetic rehabilitations according to the framework design using the Finite Element Analysis. An implant-supported full-arch fixed dental prosthesis was developed using a modeling software. Two conditions were modeled: a conventional casted framework and an experimental prosthesis with customized milled framework. The geometries of bone, prostheses, implants and abutments were modeled. The mechanical properties and friction coefficient for each isotropic and homogeneous material were simulated. A load of 100 N load was applied on the external surface of the prosthesis at 30° and the results were analyzed in terms of von Mises stress, microstrains and displacements. In the experimental design, a decrease of prosthesis displacement, bone strain and stresses in the metallic structures was observed, except for the abutment screw that showed a stress increase of 19.01%. The conventional design exhibited the highest stress values located on the prosthesis framework (29.65 MPa) between the anterior implants, in comparison with the experimental design (13.27 MPa in the same region). An alternative design of a stronger framework with lower stress concentration was reported. The current study represents an important step in the design and analysis of implant-supported full-arch fixed dental prosthesis with limited occlusal vertical dimension.
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spelling pubmed-73134572020-06-29 The Influence of Custom-Milled Framework Design for an Implant-Supported Full-Arch Fixed Dental Prosthesis: 3D-FEA Sudy Tribst, João Paulo Mendes Dal Piva, Amanda Maria de Oliveira Lo Giudice, Roberto Borges, Alexandre Luiz Souto Bottino, Marco Antonio Epifania, Ettore Ausiello, Pietro Int J Environ Res Public Health Article The current study aimed to evaluate the mechanical behavior of two different maxillary prosthetic rehabilitations according to the framework design using the Finite Element Analysis. An implant-supported full-arch fixed dental prosthesis was developed using a modeling software. Two conditions were modeled: a conventional casted framework and an experimental prosthesis with customized milled framework. The geometries of bone, prostheses, implants and abutments were modeled. The mechanical properties and friction coefficient for each isotropic and homogeneous material were simulated. A load of 100 N load was applied on the external surface of the prosthesis at 30° and the results were analyzed in terms of von Mises stress, microstrains and displacements. In the experimental design, a decrease of prosthesis displacement, bone strain and stresses in the metallic structures was observed, except for the abutment screw that showed a stress increase of 19.01%. The conventional design exhibited the highest stress values located on the prosthesis framework (29.65 MPa) between the anterior implants, in comparison with the experimental design (13.27 MPa in the same region). An alternative design of a stronger framework with lower stress concentration was reported. The current study represents an important step in the design and analysis of implant-supported full-arch fixed dental prosthesis with limited occlusal vertical dimension. MDPI 2020-06-05 2020-06 /pmc/articles/PMC7313457/ /pubmed/32517097 http://dx.doi.org/10.3390/ijerph17114040 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tribst, João Paulo Mendes
Dal Piva, Amanda Maria de Oliveira
Lo Giudice, Roberto
Borges, Alexandre Luiz Souto
Bottino, Marco Antonio
Epifania, Ettore
Ausiello, Pietro
The Influence of Custom-Milled Framework Design for an Implant-Supported Full-Arch Fixed Dental Prosthesis: 3D-FEA Sudy
title The Influence of Custom-Milled Framework Design for an Implant-Supported Full-Arch Fixed Dental Prosthesis: 3D-FEA Sudy
title_full The Influence of Custom-Milled Framework Design for an Implant-Supported Full-Arch Fixed Dental Prosthesis: 3D-FEA Sudy
title_fullStr The Influence of Custom-Milled Framework Design for an Implant-Supported Full-Arch Fixed Dental Prosthesis: 3D-FEA Sudy
title_full_unstemmed The Influence of Custom-Milled Framework Design for an Implant-Supported Full-Arch Fixed Dental Prosthesis: 3D-FEA Sudy
title_short The Influence of Custom-Milled Framework Design for an Implant-Supported Full-Arch Fixed Dental Prosthesis: 3D-FEA Sudy
title_sort influence of custom-milled framework design for an implant-supported full-arch fixed dental prosthesis: 3d-fea sudy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7313457/
https://www.ncbi.nlm.nih.gov/pubmed/32517097
http://dx.doi.org/10.3390/ijerph17114040
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