Literature DB >> 15681004

Siloranes in dental composites.

Wolfgang Weinmann1, Christoph Thalacker, Rainer Guggenberger.   

Abstract

OBJECTIVE: The purpose of this study was to compare the product profile of a Silorane based composite which polymerizes by a cationic ring opening process with the product profile of different methacrylate based restoratives.
METHODS: Four methacrylate based materials Filtek Z250, Filtek P60,Tetric ceram, Spectrum TPH and a Silorane based material were investigated with regard to their compressive strength, flexural strength, E-Modulus and ambient light stability. The data were analyzed by 1-way ANOVA and 2 sample t test (p<0.05). Shrinkage data were determined by the Archimedes method and the bonded disk method. The reactivity of the Silorane and Tetric ceram were derived from the time resolved shrinkage behaviour and the development of the E-Modulus over time.
RESULTS: The Silorane Composite revealed with 0.94 vol% (bonded disk method) and 0.99 vol% (Archimedes method) the lowest polymerization shrinkage among all tested composites. Its reactivity was comparable to the reactivity of Tetric Ceram. However, the ambient light stability of >10 min for Silorane was higher than the ambient light reactivity of the other tested methacrylates (55-90 s). SIGNIFICANCE: The ring opening chemistry of the Siloranes enables at the first time shrinkage values lower than 1 vol% and mechanical parameters as E-Modulus and flexural strength comparable to those of clinically well accepted methacrylate based composites.

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Year:  2005        PMID: 15681004     DOI: 10.1016/j.dental.2004.10.007

Source DB:  PubMed          Journal:  Dent Mater        ISSN: 0109-5641            Impact factor:   5.304


  120 in total

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8.  Five-year clinical performance of a silorane- vs a methacrylate-based composite combined with two different adhesive approaches.

Authors:  Bruno Baracco; M Victoria Fuentes; Laura Ceballos
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9.  New urethane oligodimethacrylates with quaternary alkylammonium for formulating dental composites.

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10.  Candida albicans adhesion to composite resin materials.

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