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Does an additional UV LED improve the degree of conversion and Knoop Hardness of light-shade composite resins?

OBJECTIVE: The purpose of this study was to evaluate the degree of conversion (DC) using FT-Raman spectroscopy and the Knoop hardness (KHN) of composites cured by second and third-generation LED light curing-units (LCU), Radii Cal and Ultralume 5. METHODS: Three composites (Filtek Supreme XT, Filtek...

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Autores principales: Giorgi, Maria Cecília Caldas, Aguiar, Flávio Henrique Baggio, Soares, Luís Eduardo Silva, Martin, Airton Abrahão, Liporoni, Priscila Christiane Suzy, Paulillo, Luís Alexandre Maffei Sartini
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dental Investigations Society 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3474554/
https://www.ncbi.nlm.nih.gov/pubmed/23077419
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author Giorgi, Maria Cecília Caldas
Aguiar, Flávio Henrique Baggio
Soares, Luís Eduardo Silva
Martin, Airton Abrahão
Liporoni, Priscila Christiane Suzy
Paulillo, Luís Alexandre Maffei Sartini
author_facet Giorgi, Maria Cecília Caldas
Aguiar, Flávio Henrique Baggio
Soares, Luís Eduardo Silva
Martin, Airton Abrahão
Liporoni, Priscila Christiane Suzy
Paulillo, Luís Alexandre Maffei Sartini
author_sort Giorgi, Maria Cecília Caldas
collection PubMed
description OBJECTIVE: The purpose of this study was to evaluate the degree of conversion (DC) using FT-Raman spectroscopy and the Knoop hardness (KHN) of composites cured by second and third-generation LED light curing-units (LCU), Radii Cal and Ultralume 5. METHODS: Three composites (Filtek Supreme XT, Filtek Z350, and Esthet X) were selected for this study. KHN testing (n=10) was performed with 10 indentations for the top (T) and bottom (B) surfaces. For DC (n=10), both the T and B surfaces were analyzed. RESULTS: For KHN, the three composites differed in hardens. There was a “LCU-surface” interaction, in which Radii Cal showed significantly greater hardens in the B surface. For DC, there was a “composite-surface-LCU” interaction. For the “composite” factor, there was no significant difference between the groups, except for Supreme XT-Radii Cal (T or B surfaces). For the “LCU” factor there was a significant difference for Supreme XT T surface, Ultralume 5 obtained a higher DC. For the Z350 T surface, a significant difference in the DC in which Radii Cal obtained better results. For the “surface” factor, all groups presented T surfaces with a higher DC than the B surfaces, the sole exceptions involved Esthet X-Radii Cal and Z350-Ultralume 5. CONCLUSION: Knowledge regarding composite composition and the characteristics of LCUs are important for effective polymerization.
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spelling pubmed-34745542012-10-17 Does an additional UV LED improve the degree of conversion and Knoop Hardness of light-shade composite resins? Giorgi, Maria Cecília Caldas Aguiar, Flávio Henrique Baggio Soares, Luís Eduardo Silva Martin, Airton Abrahão Liporoni, Priscila Christiane Suzy Paulillo, Luís Alexandre Maffei Sartini Eur J Dent Articles OBJECTIVE: The purpose of this study was to evaluate the degree of conversion (DC) using FT-Raman spectroscopy and the Knoop hardness (KHN) of composites cured by second and third-generation LED light curing-units (LCU), Radii Cal and Ultralume 5. METHODS: Three composites (Filtek Supreme XT, Filtek Z350, and Esthet X) were selected for this study. KHN testing (n=10) was performed with 10 indentations for the top (T) and bottom (B) surfaces. For DC (n=10), both the T and B surfaces were analyzed. RESULTS: For KHN, the three composites differed in hardens. There was a “LCU-surface” interaction, in which Radii Cal showed significantly greater hardens in the B surface. For DC, there was a “composite-surface-LCU” interaction. For the “composite” factor, there was no significant difference between the groups, except for Supreme XT-Radii Cal (T or B surfaces). For the “LCU” factor there was a significant difference for Supreme XT T surface, Ultralume 5 obtained a higher DC. For the Z350 T surface, a significant difference in the DC in which Radii Cal obtained better results. For the “surface” factor, all groups presented T surfaces with a higher DC than the B surfaces, the sole exceptions involved Esthet X-Radii Cal and Z350-Ultralume 5. CONCLUSION: Knowledge regarding composite composition and the characteristics of LCUs are important for effective polymerization. Dental Investigations Society 2012-10 /pmc/articles/PMC3474554/ /pubmed/23077419 Text en Copyright 2012 European Journal of Dentistry. All rights reserved.
spellingShingle Articles
Giorgi, Maria Cecília Caldas
Aguiar, Flávio Henrique Baggio
Soares, Luís Eduardo Silva
Martin, Airton Abrahão
Liporoni, Priscila Christiane Suzy
Paulillo, Luís Alexandre Maffei Sartini
Does an additional UV LED improve the degree of conversion and Knoop Hardness of light-shade composite resins?
title Does an additional UV LED improve the degree of conversion and Knoop Hardness of light-shade composite resins?
title_full Does an additional UV LED improve the degree of conversion and Knoop Hardness of light-shade composite resins?
title_fullStr Does an additional UV LED improve the degree of conversion and Knoop Hardness of light-shade composite resins?
title_full_unstemmed Does an additional UV LED improve the degree of conversion and Knoop Hardness of light-shade composite resins?
title_short Does an additional UV LED improve the degree of conversion and Knoop Hardness of light-shade composite resins?
title_sort does an additional uv led improve the degree of conversion and knoop hardness of light-shade composite resins?
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3474554/
https://www.ncbi.nlm.nih.gov/pubmed/23077419
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