Literature DB >> 22546312

Finite element analysis of maxillary bone stress caused by Aramany Class IV obturator prostheses.

Elcio Ricardo Miyashita1, Beatriz Silva Câmara Mattos, Pedro Yoshito Noritomi, Hamilton Navarro.   

Abstract

STATEMENT OF PROBLEM: The retention of an Aramany Class IV removable partial dental prosthesis can be compromised by a lack of support. The biomechanics of this obturator prosthesis result in an unusual stress distribution on the residual maxillary bone.
PURPOSE: This study evaluated the biomechanics of an Aramany Class IV obturator prosthesis with finite element analysis and a digital 3-dimensional (3-D) model developed from a computed tomography scan; bone stress was evaluated according to the load placed on the prosthesis.
MATERIAL AND METHODS: A 3-D model of an Aramany Class IV maxillary resection and prosthesis was constructed. This model was used to develop a finite element mesh. A 120 N load was applied to the occlusal and incisal platforms corresponding to the prosthetic teeth. Qualitative analysis was based on the scale of maximum principal stress; values obtained through quantitative analysis were expressed in MPa.
RESULTS: Under posterior load, tensile and compressive stresses were observed; the tensile stress was greater than the compressive stress, regardless of the bone region, and the greatest compressive stress was observed on the anterior palate near the midline. Under an anterior load, tensile stress was observed in all of the evaluated bone regions; the tensile stress was greater than the compressive stress, regardless of the bone region.
CONCLUSIONS: The Aramany Class IV obturator prosthesis tended to rotate toward the surgical resection when subjected to posterior or anterior loads. The amount of tensile and compressive stress caused by the Aramany Class IV obturator prosthesis did not exceed the physiological limits of the maxillary bone tissue. (J Prosthet Dent 2012;107:336-342).
Copyright © 2012 The Editorial Council of the Journal of Prosthetic Dentistry. Published by Mosby, Inc. All rights reserved.

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Year:  2012        PMID: 22546312     DOI: 10.1016/S0022-3913(12)60086-9

Source DB:  PubMed          Journal:  J Prosthet Dent        ISSN: 0022-3913            Impact factor:   3.426


  6 in total

1.  Biomechanical Stress in Obturator Prostheses: A Systematic Review of Finite Element Studies.

Authors:  Mohammed A Mousa; Johari Yap Abdullah; Nafij B Jamayet; Mohammad Khursheed Alam; Adam Husein
Journal:  Biomed Res Int       Date:  2021-08-16       Impact factor: 3.411

2.  Finite element analysis of displacement with single and two piece hollow bulb obturator prosthesis.

Authors:  K V Anitha; N Gopi Chander; V Karthikeyan; Ram Hariharasudan
Journal:  Med J Armed Forces India       Date:  2018-04-09

3.  Biomechanical 3-dimensional finite element analysis of obturator protheses retained with zygomatic and dental implants in maxillary defects.

Authors:  Canan Akay; Suat Yaluğ
Journal:  Med Sci Monit       Date:  2015-02-25

4.  A Three-Dimensional Finite Element Analysis of Aramany Class I Obturator Fabricated with Different Alloys.

Authors:  Kashinath C Arabbi; Takshil D Shah; Mahantesha Sharanappa; Shobha K Subbaiah
Journal:  J Pharm Bioallied Sci       Date:  2019-02

5.  Stress distribution & deflection in an Aramany class II obturator fabricated with cobalt-chromium & titanium alloys - 3D FEA.

Authors:  Takshil D Shah; Y G Naveen; Puttaraj Kattimani; Giridhar Kamath; Kalind Shah; Aasif Raza
Journal:  Saudi Dent J       Date:  2019-01-18

6.  Stress distribution on different bar materials in implant-retained palatal obturator.

Authors:  Regina Furbino Villefort; João Paulo Mendes Tribst; Amanda Maria de Oliveira Dal Piva; Alexandre Luiz Borges; Nívia Castro Binda; Carlos Eduardo de Almeida Ferreira; Marco Antonio Bottino; Sandra Lúcia Ventorim von Zeidler
Journal:  PLoS One       Date:  2020-10-30       Impact factor: 3.240

  6 in total

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