Finite Element Analysis of the Effect of Proximal Contour of Class II Composite Restorations on Stress Distribution

Introduction: The aim of this study was to evaluate the effect of proximal contour of class II composite restorations placed with straight or contoured matrix band using composite resins with different modulus of elasticity on stress distribution by finite element method. Methods: In order to evalua...

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Main Authors: Hossein Abachizadeh, Hamideh Ameri, Mohammad Javad Moghaddas
Format: Article
Language:English
Published: Mashhad University of Medical Sciences 2012-09-01
Series:Journal of Dental Materials and Techniques
Subjects:
Online Access:http://jdmt.mums.ac.ir/?_action=showPDF&article=90&_ob=e8c4cca4c1a1c8a5c0ac10305f0fc918&fileName=full_text.pdf
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spelling doaj-3f504f7cab984dfc8629bc6989d9083d2020-11-24T22:32:26ZengMashhad University of Medical SciencesJournal of Dental Materials and Techniques2322-41502252-03172012-09-01112934Finite Element Analysis of the Effect of Proximal Contour of Class II Composite Restorations on Stress DistributionHossein AbachizadehHamideh AmeriMohammad Javad MoghaddasIntroduction: The aim of this study was to evaluate the effect of proximal contour of class II composite restorations placed with straight or contoured matrix band using composite resins with different modulus of elasticity on stress distribution by finite element method. Methods: In order to evaluate the stress distribution of class II composite restorations using finite element method, upper right first molar and second premolar were modeled. Proximal boxes were designed and restored with universal Z250 and packable P60 composite resins (3M ESPE) using two matrix systems: flat Tofflemire matrix and precurved sectional matrix. Finally models were evaluated under loads of 200 and 400 Newton at 90 degrees angle and the results were graphically illustrated in the form of Von Misses stresses. Results: In general the stress obtained under 400 Newton load was significantly greater than the stress of models under 200 Newton load. Von Misses stress distribution pattern of two different Z250 and P60 composites were very similar in all modes of loading and proximal contour. In all analyzed models there was a significant difference between models restored with Tofflemire matrix with flat contour and models restored with sectional matrix with curved contour. This difference was greater in first molar than second premolar. Conclusion: Use of a contoured matrix band results in less stress in class II composite resin restorations. http://jdmt.mums.ac.ir/?_action=showPDF&article=90&_ob=e8c4cca4c1a1c8a5c0ac10305f0fc918&fileName=full_text.pdfWords: Class IIfinite element analysismatrix bandposterior compositeproximal contour.
collection DOAJ
language English
format Article
sources DOAJ
author Hossein Abachizadeh
Hamideh Ameri
Mohammad Javad Moghaddas
spellingShingle Hossein Abachizadeh
Hamideh Ameri
Mohammad Javad Moghaddas
Finite Element Analysis of the Effect of Proximal Contour of Class II Composite Restorations on Stress Distribution
Journal of Dental Materials and Techniques
Words: Class II
finite element analysis
matrix band
posterior composite
proximal contour.
author_facet Hossein Abachizadeh
Hamideh Ameri
Mohammad Javad Moghaddas
author_sort Hossein Abachizadeh
title Finite Element Analysis of the Effect of Proximal Contour of Class II Composite Restorations on Stress Distribution
title_short Finite Element Analysis of the Effect of Proximal Contour of Class II Composite Restorations on Stress Distribution
title_full Finite Element Analysis of the Effect of Proximal Contour of Class II Composite Restorations on Stress Distribution
title_fullStr Finite Element Analysis of the Effect of Proximal Contour of Class II Composite Restorations on Stress Distribution
title_full_unstemmed Finite Element Analysis of the Effect of Proximal Contour of Class II Composite Restorations on Stress Distribution
title_sort finite element analysis of the effect of proximal contour of class ii composite restorations on stress distribution
publisher Mashhad University of Medical Sciences
series Journal of Dental Materials and Techniques
issn 2322-4150
2252-0317
publishDate 2012-09-01
description Introduction: The aim of this study was to evaluate the effect of proximal contour of class II composite restorations placed with straight or contoured matrix band using composite resins with different modulus of elasticity on stress distribution by finite element method. Methods: In order to evaluate the stress distribution of class II composite restorations using finite element method, upper right first molar and second premolar were modeled. Proximal boxes were designed and restored with universal Z250 and packable P60 composite resins (3M ESPE) using two matrix systems: flat Tofflemire matrix and precurved sectional matrix. Finally models were evaluated under loads of 200 and 400 Newton at 90 degrees angle and the results were graphically illustrated in the form of Von Misses stresses. Results: In general the stress obtained under 400 Newton load was significantly greater than the stress of models under 200 Newton load. Von Misses stress distribution pattern of two different Z250 and P60 composites were very similar in all modes of loading and proximal contour. In all analyzed models there was a significant difference between models restored with Tofflemire matrix with flat contour and models restored with sectional matrix with curved contour. This difference was greater in first molar than second premolar. Conclusion: Use of a contoured matrix band results in less stress in class II composite resin restorations.
topic Words: Class II
finite element analysis
matrix band
posterior composite
proximal contour.
url http://jdmt.mums.ac.ir/?_action=showPDF&article=90&_ob=e8c4cca4c1a1c8a5c0ac10305f0fc918&fileName=full_text.pdf
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AT hamidehameri finiteelementanalysisoftheeffectofproximalcontourofclassiicompositerestorationsonstressdistribution
AT mohammadjavadmoghaddas finiteelementanalysisoftheeffectofproximalcontourofclassiicompositerestorationsonstressdistribution
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