Biomechanical Behavior of Tooth-Implant Supported Prostheses With Different Implant Connections: A Nonlinear Finite Element Analysis

Biomechanical behavior of tooth-implant-supported prostheses (TISPs) with external and internal implants was compared. Two 3-D models of TISP were designed by varying the implant: external (Model EH) and internal hexagons (Model IH). After loading, von Mises stresses were obtained in implants, abutm...

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Published in:Implant dentistry Vol. 27; no. 3; pp. 294 - 302
Main Authors: de Paula, Gustavo Assis, Silva, Guilherme Carvalho, Vilaça, Ênio Lacerda, Cornacchia, Tulimar Machado, de Magalhães, Cláudia Silami, Moreira, Allyson Nogueira
Format: Journal Article
Language:English
Published: United States 01-06-2018
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Abstract Biomechanical behavior of tooth-implant-supported prostheses (TISPs) with external and internal implants was compared. Two 3-D models of TISP were designed by varying the implant: external (Model EH) and internal hexagons (Model IH). After loading, von Mises stresses were obtained in implants, abutments, and screws. Principal maximum (σmax) and minimum (σmin) stresses were analyzed in periodontal ligament (PL), alveolar bone, and periimplant bone. Model IH showed lower stress peaks in axial loading in the implant and in the screw but higher in abutment. In oblique loading, Model IH had lower stresses in the implant, but higher in the abutment and in the screw. In the σmax analysis for axial and oblique loads, stress peaks in Model IH were lower in PL, alveolar bone, and periimplant bone. In the σmin analysis for axial load, stress peaks in Model IH were lower in PL, but higher in alveolar bone and in periimplant bone. In oblique load, Model IH showed lower stress peaks in PL and alveolar bone, but higher stress peaks in periimplant bone. TISPs with IH implants do present lower risk of biomechanical failure.
AbstractList Biomechanical behavior of tooth-implant-supported prostheses (TISPs) with external and internal implants was compared. Two 3-D models of TISP were designed by varying the implant: external (Model EH) and internal hexagons (Model IH). After loading, von Mises stresses were obtained in implants, abutments, and screws. Principal maximum (σmax) and minimum (σmin) stresses were analyzed in periodontal ligament (PL), alveolar bone, and periimplant bone. Model IH showed lower stress peaks in axial loading in the implant and in the screw but higher in abutment. In oblique loading, Model IH had lower stresses in the implant, but higher in the abutment and in the screw. In the σmax analysis for axial and oblique loads, stress peaks in Model IH were lower in PL, alveolar bone, and periimplant bone. In the σmin analysis for axial load, stress peaks in Model IH were lower in PL, but higher in alveolar bone and in periimplant bone. In oblique load, Model IH showed lower stress peaks in PL and alveolar bone, but higher stress peaks in periimplant bone. TISPs with IH implants do present lower risk of biomechanical failure.
PURPOSEBiomechanical behavior of tooth-implant-supported prostheses (TISPs) with external and internal implants was compared.MATERIALS AND METHODSTwo 3-D models of TISP were designed by varying the implant: external (Model EH) and internal hexagons (Model IH). After loading, von Mises stresses were obtained in implants, abutments, and screws. Principal maximum (σmax) and minimum (σmin) stresses were analyzed in periodontal ligament (PL), alveolar bone, and periimplant bone.RESULTSModel IH showed lower stress peaks in axial loading in the implant and in the screw but higher in abutment. In oblique loading, Model IH had lower stresses in the implant, but higher in the abutment and in the screw. In the σmax analysis for axial and oblique loads, stress peaks in Model IH were lower in PL, alveolar bone, and periimplant bone. In the σmin analysis for axial load, stress peaks in Model IH were lower in PL, but higher in alveolar bone and in periimplant bone. In oblique load, Model IH showed lower stress peaks in PL and alveolar bone, but higher stress peaks in periimplant bone.CONCLUSIONSTISPs with IH implants do present lower risk of biomechanical failure.
Author de Magalhães, Cláudia Silami
de Paula, Gustavo Assis
Cornacchia, Tulimar Machado
Silva, Guilherme Carvalho
Vilaça, Ênio Lacerda
Moreira, Allyson Nogueira
Author_xml – sequence: 1
  givenname: Gustavo Assis
  surname: de Paula
  fullname: de Paula, Gustavo Assis
  organization: Postgraduate, Department of Restorative Dentistry, School of Dentistry, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil
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  givenname: Guilherme Carvalho
  surname: Silva
  fullname: Silva, Guilherme Carvalho
  organization: Adjunct Professor, Department of Restorative Dentistry, School of Dentistry, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil
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  givenname: Ênio Lacerda
  surname: Vilaça
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  givenname: Tulimar Machado
  surname: Cornacchia
  fullname: Cornacchia, Tulimar Machado
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  givenname: Cláudia Silami
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  givenname: Allyson Nogueira
  surname: Moreira
  fullname: Moreira, Allyson Nogueira
  organization: Full Professor, Department of Restorative Dentistry, School of Dentistry, Universidade Federal de Minas Gerais, Belo Horizonte, Brazil
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Snippet Biomechanical behavior of tooth-implant-supported prostheses (TISPs) with external and internal implants was compared. Two 3-D models of TISP were designed by...
PURPOSEBiomechanical behavior of tooth-implant-supported prostheses (TISPs) with external and internal implants was compared.MATERIALS AND METHODSTwo 3-D...
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StartPage 294
SubjectTerms Biomechanical Phenomena
Bone Screws
Computer-Aided Design
Dental Abutments
Dental Implant-Abutment Design
Dental Implants, Single-Tooth
Dental Models
Dental Prosthesis, Implant-Supported
Dental Stress Analysis
Dentistry
Finite Element Analysis
Mandible
Materials Testing
Tomography, X-Ray Computed
Title Biomechanical Behavior of Tooth-Implant Supported Prostheses With Different Implant Connections: A Nonlinear Finite Element Analysis
URI https://www.ncbi.nlm.nih.gov/pubmed/29521677
https://search.proquest.com/docview/2012912538
Volume 27
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