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INTERNAL ADAPTATION OF CAST TITANIUM CROWNS

As the adaptation of titanium crowns obtained by Rematitan Plus investment, specific for titanium, is not recognized to be suitable, this study evaluated the effect of the concentration of the specific liquid and the temperature of the mold of investments on the internal misfit of crowns cast on com...

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Autores principales: da Rocha, Sicknan Soares, Adabo, Gelson Luis, Ribeiro, Ricardo Faria, Fonseca, Renata Garcia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Faculdade de Odontologia de Bauru da Universidade de São Paulo 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4327424/
https://www.ncbi.nlm.nih.gov/pubmed/19089139
http://dx.doi.org/10.1590/S1678-77572007000400002
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author da Rocha, Sicknan Soares
Adabo, Gelson Luis
Ribeiro, Ricardo Faria
Fonseca, Renata Garcia
author_facet da Rocha, Sicknan Soares
Adabo, Gelson Luis
Ribeiro, Ricardo Faria
Fonseca, Renata Garcia
author_sort da Rocha, Sicknan Soares
collection PubMed
description As the adaptation of titanium crowns obtained by Rematitan Plus investment, specific for titanium, is not recognized to be suitable, this study evaluated the effect of the concentration of the specific liquid and the temperature of the mold of investments on the internal misfit of crowns cast on commercially pure titanium. Individual dies of epoxy resin were obtained, representing teeth prepared for full-crown restoration with a 6-degree axial surface convergence angle and shoulder (1.0 mm). For the waxing of each crown, a ring-shaped stainless steel matrix (8.0mm internal diameter; 7.5 mm height) was adapted above the individual dies of epoxy resin. The Rematian Plus investment was mixed according to the manufacturer's instructions using two different concentrations of the specific liquid: 100%, 75%. Casting was performed in a Discovery Plasma Ar-arc vacuum-pressure casting machine with molds at temperatures of 430°C, 515°C and 600°C. The crowns were cleaned individually in a solution (1% HF + 13% HNO(3)) for 10 min using a ultrasonic cleaner, with no internal adaptations, and luted with zinc phosphate cement under a 5 kg static load. The crown and die assemblies were embedded in resin and sectioned longitudinally. The area occupied by cement was observed using stereoscopic lens (10X) and measured by the Leica Qwin image analysis system (mm(2)). The data for each experimental condition (n=8) were analyzed by Kruskal-Wallis non-parametric test (á=0.05). The results showed that liquid dilution and the increase in mold temperature did not significantly influence the levels of internal fit of the cast titanium crowns. The lowest means (±SD) of internal misfit were obtained for the 430°C/100%: (7.25 mm(2) ±1.59) and 600°C/100% (8.8 mm(2) ±2.25) groups, which presented statistically similar levels of internal misfit.
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spelling pubmed-43274242015-04-16 INTERNAL ADAPTATION OF CAST TITANIUM CROWNS da Rocha, Sicknan Soares Adabo, Gelson Luis Ribeiro, Ricardo Faria Fonseca, Renata Garcia J Appl Oral Sci Original Article As the adaptation of titanium crowns obtained by Rematitan Plus investment, specific for titanium, is not recognized to be suitable, this study evaluated the effect of the concentration of the specific liquid and the temperature of the mold of investments on the internal misfit of crowns cast on commercially pure titanium. Individual dies of epoxy resin were obtained, representing teeth prepared for full-crown restoration with a 6-degree axial surface convergence angle and shoulder (1.0 mm). For the waxing of each crown, a ring-shaped stainless steel matrix (8.0mm internal diameter; 7.5 mm height) was adapted above the individual dies of epoxy resin. The Rematian Plus investment was mixed according to the manufacturer's instructions using two different concentrations of the specific liquid: 100%, 75%. Casting was performed in a Discovery Plasma Ar-arc vacuum-pressure casting machine with molds at temperatures of 430°C, 515°C and 600°C. The crowns were cleaned individually in a solution (1% HF + 13% HNO(3)) for 10 min using a ultrasonic cleaner, with no internal adaptations, and luted with zinc phosphate cement under a 5 kg static load. The crown and die assemblies were embedded in resin and sectioned longitudinally. The area occupied by cement was observed using stereoscopic lens (10X) and measured by the Leica Qwin image analysis system (mm(2)). The data for each experimental condition (n=8) were analyzed by Kruskal-Wallis non-parametric test (á=0.05). The results showed that liquid dilution and the increase in mold temperature did not significantly influence the levels of internal fit of the cast titanium crowns. The lowest means (±SD) of internal misfit were obtained for the 430°C/100%: (7.25 mm(2) ±1.59) and 600°C/100% (8.8 mm(2) ±2.25) groups, which presented statistically similar levels of internal misfit. Faculdade de Odontologia de Bauru da Universidade de São Paulo 2007-08 /pmc/articles/PMC4327424/ /pubmed/19089139 http://dx.doi.org/10.1590/S1678-77572007000400002 Text en http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License, which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
da Rocha, Sicknan Soares
Adabo, Gelson Luis
Ribeiro, Ricardo Faria
Fonseca, Renata Garcia
INTERNAL ADAPTATION OF CAST TITANIUM CROWNS
title INTERNAL ADAPTATION OF CAST TITANIUM CROWNS
title_full INTERNAL ADAPTATION OF CAST TITANIUM CROWNS
title_fullStr INTERNAL ADAPTATION OF CAST TITANIUM CROWNS
title_full_unstemmed INTERNAL ADAPTATION OF CAST TITANIUM CROWNS
title_short INTERNAL ADAPTATION OF CAST TITANIUM CROWNS
title_sort internal adaptation of cast titanium crowns
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4327424/
https://www.ncbi.nlm.nih.gov/pubmed/19089139
http://dx.doi.org/10.1590/S1678-77572007000400002
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