Matemathics Model Analysis of Biomechanical Behaviour of Three Dental Materials to Loading Related to Bruxism

The aim of study is to highlights the biomechanical behaviour of three dental materials during loading related to bruxism. It was created a finite element model of mandibular canin. The modelling was performed in Rhinoceros, AutoCad and the finite element analysis was performed in COSMOSWorks 2010....

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Main Authors: Eugen Balacel, St. Lacatusu, C. Topoliceanu, I. Balacel, G. Iovan, A. Ghiorghe
Format: Article
Language:English
Published: Romanian Society of Oral Rehabilitation 2011-11-01
Series:Romanian Journal of Oral Rehabilitation
Subjects:
fea
Online Access:http://www.rjor.ro/matemathics-model-analysis-of-biomechanical-behaviour-of-three-dental-materials-to-loading-related-to-bruxism/?lang=ro
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spelling doaj-feb9836e17864f59802116603a3e99b62020-11-24T21:47:58ZengRomanian Society of Oral RehabilitationRomanian Journal of Oral Rehabilitation2066-70002601-46612011-11-01333236Matemathics Model Analysis of Biomechanical Behaviour of Three Dental Materials to Loading Related to BruxismEugen Balacel0St. Lacatusu1C. Topoliceanu2I. Balacel3G. Iovan4A. Ghiorghe5PhD Student, Dept. Odontology, Faculty Med. Dent., "Gr. T. Popa" U.M.Ph Iasi, RomaniaProf., Dept. Odontology, Faculty Med. Dent., "Gr. T. Popa" U.M.Ph Iasi, RomaniaAssist, Dept. Odontology, Faculty Med. Dent., "Gr. T. Popa" U.M.Ph Iasi, RomaniaPhD Student, Dept. Odontology, Faculty Med. Dent., "Gr. T. Popa" U.M.Ph Iasi, RomaniaAssoc. Prof. University of Medicine and Pharmacy "Gr. T. Popa" Iasi, RomaniaLecturer, Dept. Odontology, Faculty Med. Dent., "Gr. T. Popa" U.M.Ph Iasi, RomaniaThe aim of study is to highlights the biomechanical behaviour of three dental materials during loading related to bruxism. It was created a finite element model of mandibular canin. The modelling was performed in Rhinoceros, AutoCad and the finite element analysis was performed in COSMOSWorks 2010. Occlusal loading was applied vertical and had a value of 1000N. The analysed cervical restorations were performed by dental amalgam, composite resins and glassionomer cements. The results confirm clinical observations related to the correlations between maximal occlusal forces to incisal margin of canin and maximal tensions to the level of cervical restorations.http://www.rjor.ro/matemathics-model-analysis-of-biomechanical-behaviour-of-three-dental-materials-to-loading-related-to-bruxism/?lang=robruxismcomposite resinsdental amalgamfeaglassionomer cements
collection DOAJ
language English
format Article
sources DOAJ
author Eugen Balacel
St. Lacatusu
C. Topoliceanu
I. Balacel
G. Iovan
A. Ghiorghe
spellingShingle Eugen Balacel
St. Lacatusu
C. Topoliceanu
I. Balacel
G. Iovan
A. Ghiorghe
Matemathics Model Analysis of Biomechanical Behaviour of Three Dental Materials to Loading Related to Bruxism
Romanian Journal of Oral Rehabilitation
bruxism
composite resins
dental amalgam
fea
glassionomer cements
author_facet Eugen Balacel
St. Lacatusu
C. Topoliceanu
I. Balacel
G. Iovan
A. Ghiorghe
author_sort Eugen Balacel
title Matemathics Model Analysis of Biomechanical Behaviour of Three Dental Materials to Loading Related to Bruxism
title_short Matemathics Model Analysis of Biomechanical Behaviour of Three Dental Materials to Loading Related to Bruxism
title_full Matemathics Model Analysis of Biomechanical Behaviour of Three Dental Materials to Loading Related to Bruxism
title_fullStr Matemathics Model Analysis of Biomechanical Behaviour of Three Dental Materials to Loading Related to Bruxism
title_full_unstemmed Matemathics Model Analysis of Biomechanical Behaviour of Three Dental Materials to Loading Related to Bruxism
title_sort matemathics model analysis of biomechanical behaviour of three dental materials to loading related to bruxism
publisher Romanian Society of Oral Rehabilitation
series Romanian Journal of Oral Rehabilitation
issn 2066-7000
2601-4661
publishDate 2011-11-01
description The aim of study is to highlights the biomechanical behaviour of three dental materials during loading related to bruxism. It was created a finite element model of mandibular canin. The modelling was performed in Rhinoceros, AutoCad and the finite element analysis was performed in COSMOSWorks 2010. Occlusal loading was applied vertical and had a value of 1000N. The analysed cervical restorations were performed by dental amalgam, composite resins and glassionomer cements. The results confirm clinical observations related to the correlations between maximal occlusal forces to incisal margin of canin and maximal tensions to the level of cervical restorations.
topic bruxism
composite resins
dental amalgam
fea
glassionomer cements
url http://www.rjor.ro/matemathics-model-analysis-of-biomechanical-behaviour-of-three-dental-materials-to-loading-related-to-bruxism/?lang=ro
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