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Thickness and Substrate Effect on the Mechanical Behaviour of Direct Occlusal Veneers

PURPOSE: This study aimed to evaluate the fracture resistance and stress magnitude of occlusal veneers made of conventional or flowable resin composites at different minimal thicknesses bonded on enamel or dentin. MATERIAL AND METHODS: A total of 120 sound bovine incisors were flattened and used as...

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Autores principales: Tribst, João Paulo M., Tach, Qais, de Kok, Paul, Dal Piva, Amanda Maria de O., Kuijs, Ruud H., Kleverlaan, Cornelis J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10509395/
https://www.ncbi.nlm.nih.gov/pubmed/36509557
http://dx.doi.org/10.1016/j.identj.2022.11.006
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author Tribst, João Paulo M.
Tach, Qais
de Kok, Paul
Dal Piva, Amanda Maria de O.
Kuijs, Ruud H.
Kleverlaan, Cornelis J.
author_facet Tribst, João Paulo M.
Tach, Qais
de Kok, Paul
Dal Piva, Amanda Maria de O.
Kuijs, Ruud H.
Kleverlaan, Cornelis J.
author_sort Tribst, João Paulo M.
collection PubMed
description PURPOSE: This study aimed to evaluate the fracture resistance and stress magnitude of occlusal veneers made of conventional or flowable resin composites at different minimal thicknesses bonded on enamel or dentin. MATERIAL AND METHODS: A total of 120 sound bovine incisors were flattened and used as substrates (enamel or dentin) for the restorations. The teeth were embedded into polymethyl methacrylate and allocated into 4 groups according to the resin composite (Clearfil AP-X PLT and Clearfil Majesty Flow, Kuraray Dental) and substrate. Further, the substrates were randomly subdivided in 12 groups (N = 120, n = 10) according to the occlusal veneer minimal thickness: 0.5, 1.0, or 2.0 mm. The teeth were directly restored with a standardised procedure. Then, the specimens were loaded until fracture in a universal testing machine (Instron 6022, Instron Corp.). A 3-way and a 1-way analysis of variance were used to determine significant differences for each factor. Three-dimensional finite element analysis was carried out following the in vitro boundary conditions to assess the stress magnitude in the restoration during compressive loading. RESULTS: The fracture loads were recorded into initial load to failure (ILF) and fatal load to failure (FLF). Differences were found in material for ILF and FLF, leading to an overall equal good performance in fracture load and stress distribution for both materials, regardless of the substrate. Differences in thickness were apparent in both ILF and FLF. CONCLUSIONS: Direct conventional and flow resin composite occlusal veneers present a promising mechanical behaviour when bonded on enamel or dentin. However, caution is advised when preparing 0.5-mm minimal thickness restorations.
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spelling pubmed-105093952023-09-21 Thickness and Substrate Effect on the Mechanical Behaviour of Direct Occlusal Veneers Tribst, João Paulo M. Tach, Qais de Kok, Paul Dal Piva, Amanda Maria de O. Kuijs, Ruud H. Kleverlaan, Cornelis J. Int Dent J Scientific Research Report PURPOSE: This study aimed to evaluate the fracture resistance and stress magnitude of occlusal veneers made of conventional or flowable resin composites at different minimal thicknesses bonded on enamel or dentin. MATERIAL AND METHODS: A total of 120 sound bovine incisors were flattened and used as substrates (enamel or dentin) for the restorations. The teeth were embedded into polymethyl methacrylate and allocated into 4 groups according to the resin composite (Clearfil AP-X PLT and Clearfil Majesty Flow, Kuraray Dental) and substrate. Further, the substrates were randomly subdivided in 12 groups (N = 120, n = 10) according to the occlusal veneer minimal thickness: 0.5, 1.0, or 2.0 mm. The teeth were directly restored with a standardised procedure. Then, the specimens were loaded until fracture in a universal testing machine (Instron 6022, Instron Corp.). A 3-way and a 1-way analysis of variance were used to determine significant differences for each factor. Three-dimensional finite element analysis was carried out following the in vitro boundary conditions to assess the stress magnitude in the restoration during compressive loading. RESULTS: The fracture loads were recorded into initial load to failure (ILF) and fatal load to failure (FLF). Differences were found in material for ILF and FLF, leading to an overall equal good performance in fracture load and stress distribution for both materials, regardless of the substrate. Differences in thickness were apparent in both ILF and FLF. CONCLUSIONS: Direct conventional and flow resin composite occlusal veneers present a promising mechanical behaviour when bonded on enamel or dentin. However, caution is advised when preparing 0.5-mm minimal thickness restorations. Elsevier 2022-12-09 /pmc/articles/PMC10509395/ /pubmed/36509557 http://dx.doi.org/10.1016/j.identj.2022.11.006 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Scientific Research Report
Tribst, João Paulo M.
Tach, Qais
de Kok, Paul
Dal Piva, Amanda Maria de O.
Kuijs, Ruud H.
Kleverlaan, Cornelis J.
Thickness and Substrate Effect on the Mechanical Behaviour of Direct Occlusal Veneers
title Thickness and Substrate Effect on the Mechanical Behaviour of Direct Occlusal Veneers
title_full Thickness and Substrate Effect on the Mechanical Behaviour of Direct Occlusal Veneers
title_fullStr Thickness and Substrate Effect on the Mechanical Behaviour of Direct Occlusal Veneers
title_full_unstemmed Thickness and Substrate Effect on the Mechanical Behaviour of Direct Occlusal Veneers
title_short Thickness and Substrate Effect on the Mechanical Behaviour of Direct Occlusal Veneers
title_sort thickness and substrate effect on the mechanical behaviour of direct occlusal veneers
topic Scientific Research Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10509395/
https://www.ncbi.nlm.nih.gov/pubmed/36509557
http://dx.doi.org/10.1016/j.identj.2022.11.006
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