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AuthorRichert R.
AuthorFarges J.
AuthorTamimi F.
AuthorNaouar N.
AuthorBoisse P.
AuthorDucret M.
Available date2022-05-31T19:01:23Z
Publication Date2020
Publication NameMaterials
ResourceScopus
Identifierhttp://dx.doi.org/10.3390/MA13153280
URIhttp://hdl.handle.net/10576/31838
AbstractFinite element (FE) models are widely used to investigate the biomechanics of reconstructed premolars. However, parameter identification is a complex step because experimental validation cannot always be conducted. The aim of this study was to collect the experimentally validated FE models of premolars, extract their parameters, and discuss trends. A systematic review was performed following Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines. Records were identified in three electronic databases (MEDLINE [PubMed], Scopus, The Cochrane Library) by two independent reviewers. Twenty-seven parameters dealing with failure criteria, model construction, material laws, boundary conditions, and model validation were extracted from the included articles. From 1306 records, 214 were selected for eligibility and entirely read. Among them, 19 studies were included. A heterogeneity was observed for several parameters associated with failure criteria and model construction. Elasticity, linearity, and isotropy were more often chosen for dental and periodontal tissues with a Young's modulus mostly set at 18-18.6 GPa for dentine. Loading was mainly simulated by an axial force, and FE models were mostly validated by in vitro tests evaluating tooth strains, but different conditions about experiment type, sample size, and tooth status (intact or restored) were reported. In conclusion, material laws identified herein could be applied to future premolar FE models. However, further investigations such as sensitivity analysis are required for several parameters to clarify their indication.
Languageen
PublisherMDPI AG
SubjectDigital libraries
Elastic moduli
Failure (mechanical)
Sensitivity analysis
Cochrane library
Electronic database
Experimental validations
Failure criteria
Model construction
Model validation
Periodontal tissue
Systematic Review
Finite element method
TitleValidated finite element models of premolars: A scoping review
TypeArticle
Issue Number15
Volume Number13
dc.accessType Abstract Only


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