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1.
Braz. oral res. (Online) ; 34: e005, 2020. tab, graf
Article Dans Anglais | LILACS | ID: biblio-1055521

Résumé

Abstract The purpose of this study was to evaluate the effect of ionizing radiation from high energy X-ray on fluoride release, surface roughness, flexural strength, and surface chemical composition of the materials. The study groups comprised five different restorative materials: Beautifil II, GCP Glass Fill, Amalgomer CR, Zirconomer, and Fuji IX GP. Twenty disk-shaped specimens (8x2 mm) for fluoride release and 20 bar-shaped specimens (25 x 2x 2 mm) for flexural strength were prepared from each material. Each material group was divided into two subgroups: irradiated (IR) and non-irradiated (Non-IR). The specimens from IR groups were irradiated with 1.8 Gy/day for 39 days (total IR = 70.2 Gy). The amount of fluoride released into deionized water was measured using a fluoride ion-selective electrode and ion analyzer after 24 hours and on days 2, 3, 7, 15, 21, 28, 35, and 39 (n = 10). The flexural strength was evaluated using the three-point bending test (n = 10). After the period of measurement of fluoride release, seven specimens (n = 7) from each group were randomly selected to evaluate surface roughness using AFM and one specimen was randomly selected for the SEM and EDS analyses. Data were analyzed with two-way ANOVA and Tukey tests (p = 0.05). The irradiation significantly increased fluoride release and surface roughness for Amalgomer CR and Zirconomer groups (p < 0.05). No significant change in flexural strength of the materials was observed after irradiation (p > 0.05). The ionizing radiation altered the amount of fluoride release and surface roughness of only Amalgomer CR and Zirconomer. The effect could be related to the chemical compositions of materials.


Sujets)
Apatites/effets des radiations , Rayonnement ionisant , Méthacrylate bisphénol A-glycidyl/effets des radiations , Résines composites/effets des radiations , Fluorures/composition chimique , Ciment ionomère au verre/effets des radiations , Apatites/composition chimique , Valeurs de référence , Spectrométrie d'émission X , Propriétés de surface/effets des radiations , Facteurs temps , Zirconium/effets des radiations , Zirconium/composition chimique , Test de matériaux , Microscopie électronique à balayage , Reproductibilité des résultats , Analyse de variance , Méthacrylate bisphénol A-glycidyl/composition chimique , Statistique non paramétrique , Résines composites/composition chimique , Résistance à la flexion , Ciment ionomère au verre/composition chimique
2.
J. appl. oral sci ; 16(1): 35-42, Jan.-Feb. 2008. ilus, graf, tab
Article Dans Anglais | LILACS | ID: lil-472687

Résumé

The aim of this study was to evaluate the polymerization shrinkage and shrinkage stress of composites polymerized with a LED and a quartz tungsten halogen (QTH) light sources. The LED was used in a conventional mode (CM) and the QTH was used in both conventional and pulse-delay modes (PD). The composite resins used were Z100, A110, SureFil and Bisfil 2B (chemical-cured). Composite deformation upon polymerization was measured by the strain gauge method. The shrinkage stress was measured by photoelastic analysis. The polymerization shrinkage data were analyzed statistically using two-way ANOVA and Tukey test (p<0.05), and the stress data were analyzed by one-way ANOVA and Tukey's test (p<0.05). Shrinkage and stress means of Bisfil 2B were statistically significant lower than those of Z100, A110 and SureFil. In general, the PD mode reduced the contraction and the stress values when compared to CM. LED generated the same stress as QTH in conventional mode. Regardless of the activation mode, SureFil produced lower contraction and stress values than the other light-cured resins. Conversely, Z100 and A110 produced the greatest contraction and stress values. As expected, the chemically cured resin generated lower shrinkage and stress than the light-cured resins. In conclusion, The PD mode effectively decreased contraction stress for Z100 and A110. Development of stress in light-cured resins depended on the shrinkage value.


Sujets)
Humains , Résines composites/composition chimique , Lampes à photopolymériser dentaires/classification , Matériaux dentaires/composition chimique , Phénomènes chimiques , Résines composites/effets des radiations , Modèles dentaires , Préparation de cavité dentaire/classification , Matériaux dentaires/effets des radiations , Résines époxy/composition chimique , Test de matériaux , Polymères/composition chimique , Polymères/effets des radiations , Dose de rayonnement , Céments résine/composition chimique , Contrainte mécanique , Propriétés de surface , Silice/composition chimique , Silice/effets des radiations , Facteurs temps , Zirconium/composition chimique , Zirconium/effets des radiations
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