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The Light Reflection Changes of Monolithic Zirconia and Lithium Disilicate after Using Two External Staining Kits following by Thermocycling

Background: The purpose of the study was to evaluate the changes of light reflection% on two materials (monolithic zirconia and lithium disilicate) after using two external staining kits following by thermocycling. Methods: Specimens were sectioned from monolithic zirconia (n = 60) and lithium disil...

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Autores principales: Dolve, Eran, Ben-Izhack, Gil, Meirowitz, Avi, Erel, Hadar, Rosner, Ofir, Biadsee, Ameer, Lugassy, Diva, Shely, Asaf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10004587/
https://www.ncbi.nlm.nih.gov/pubmed/36903172
http://dx.doi.org/10.3390/ma16052057
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author Dolve, Eran
Ben-Izhack, Gil
Meirowitz, Avi
Erel, Hadar
Rosner, Ofir
Biadsee, Ameer
Lugassy, Diva
Shely, Asaf
author_facet Dolve, Eran
Ben-Izhack, Gil
Meirowitz, Avi
Erel, Hadar
Rosner, Ofir
Biadsee, Ameer
Lugassy, Diva
Shely, Asaf
author_sort Dolve, Eran
collection PubMed
description Background: The purpose of the study was to evaluate the changes of light reflection% on two materials (monolithic zirconia and lithium disilicate) after using two external staining kits following by thermocycling. Methods: Specimens were sectioned from monolithic zirconia (n = 60) and lithium disilicate (n = 60) then divided into six groups (n = 20). Two different types of external staining kits were used and applied to the specimens. The light reflection% was measured before staining, after staining and after thermocycling using a spectrophotometer. Results: The light reflection% of zirconia was significantly higher compared to lithium disilicate at the beginning of the study (p = 0.005), after staining with kit 1 (p = 0.005) and kit 2 (p = 0.005) and after thermocycling (p = 0.005). For both materials, the light reflection% was lower after staining with Kit 1 compared to kit 2 (p < 0.043). After thermocycling, the light reflection% of lithium disilicate increased (p = 0.027) and was unchanged with Zirconia (p = 0.527). Conclusions: There is a difference between the materials regarding light reflection% as the monolithic zirconia showed higher light reflection% comparing lithium disilicate throughout the entire experiment. For lithium disilicate, we recommend using kit 1 as we found that, after thermocycling, the light reflection% of kit 2 was increased.
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spelling pubmed-100045872023-03-11 The Light Reflection Changes of Monolithic Zirconia and Lithium Disilicate after Using Two External Staining Kits following by Thermocycling Dolve, Eran Ben-Izhack, Gil Meirowitz, Avi Erel, Hadar Rosner, Ofir Biadsee, Ameer Lugassy, Diva Shely, Asaf Materials (Basel) Article Background: The purpose of the study was to evaluate the changes of light reflection% on two materials (monolithic zirconia and lithium disilicate) after using two external staining kits following by thermocycling. Methods: Specimens were sectioned from monolithic zirconia (n = 60) and lithium disilicate (n = 60) then divided into six groups (n = 20). Two different types of external staining kits were used and applied to the specimens. The light reflection% was measured before staining, after staining and after thermocycling using a spectrophotometer. Results: The light reflection% of zirconia was significantly higher compared to lithium disilicate at the beginning of the study (p = 0.005), after staining with kit 1 (p = 0.005) and kit 2 (p = 0.005) and after thermocycling (p = 0.005). For both materials, the light reflection% was lower after staining with Kit 1 compared to kit 2 (p < 0.043). After thermocycling, the light reflection% of lithium disilicate increased (p = 0.027) and was unchanged with Zirconia (p = 0.527). Conclusions: There is a difference between the materials regarding light reflection% as the monolithic zirconia showed higher light reflection% comparing lithium disilicate throughout the entire experiment. For lithium disilicate, we recommend using kit 1 as we found that, after thermocycling, the light reflection% of kit 2 was increased. MDPI 2023-03-02 /pmc/articles/PMC10004587/ /pubmed/36903172 http://dx.doi.org/10.3390/ma16052057 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dolve, Eran
Ben-Izhack, Gil
Meirowitz, Avi
Erel, Hadar
Rosner, Ofir
Biadsee, Ameer
Lugassy, Diva
Shely, Asaf
The Light Reflection Changes of Monolithic Zirconia and Lithium Disilicate after Using Two External Staining Kits following by Thermocycling
title The Light Reflection Changes of Monolithic Zirconia and Lithium Disilicate after Using Two External Staining Kits following by Thermocycling
title_full The Light Reflection Changes of Monolithic Zirconia and Lithium Disilicate after Using Two External Staining Kits following by Thermocycling
title_fullStr The Light Reflection Changes of Monolithic Zirconia and Lithium Disilicate after Using Two External Staining Kits following by Thermocycling
title_full_unstemmed The Light Reflection Changes of Monolithic Zirconia and Lithium Disilicate after Using Two External Staining Kits following by Thermocycling
title_short The Light Reflection Changes of Monolithic Zirconia and Lithium Disilicate after Using Two External Staining Kits following by Thermocycling
title_sort light reflection changes of monolithic zirconia and lithium disilicate after using two external staining kits following by thermocycling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10004587/
https://www.ncbi.nlm.nih.gov/pubmed/36903172
http://dx.doi.org/10.3390/ma16052057
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