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Water sorption of resin-modified glass-ionomer cements photoactivated with LED

机译:LED光活化的树脂改性玻璃离聚物水泥的吸水率

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The Light Emitting Diodes (LED) technology has been used to photoactivate composite resins and there is a great number of published studies in this area. However, there are no studies regarding resin-modified glass-ionomer cements (RMGIC), which also need photoactivation. Therefore, the aim of this study was to evaluate water sorption of two RMGIC photoactivated with LED and to compare this property to that obtained with a halogen light curing unit. A resin composite was used as control. Five specimens of 15.0 mm in diameter x 1.0 mm in height were prepared for each combination of material (Fuji II LC Improved, Vitremer, and Filtek Z250) and curing unit (Radii and Optilight Plus) and transferred to desiccators until a constant mass was obtained. Then the specimens were immersed into deionized water for 7 days, weighed and reconditioned to a constant mass in desiccators. Water sorption was calculated based on weight and volume of specimens. The data were analyzed by two-way ANOVA and Tukey test (p < 0.05). Specimens photocured with LED presented significantly more water sorption than those photocured with halogen light. The RMGIC absorbed statistically significant more water than the resin composite. The type of light curing unit affected water sorption characteristics of the RMGIC.
机译:发光二极管(LED)技术已用于光活化复合树脂,并且在该领域有大量已发表的研究。但是,关于树脂改性的玻璃离聚物胶粘剂(RMGIC),也没有光活化的研究。因此,本研究的目的是评估用LED光活化的两种RMGIC的吸水率,并将其与卤素光固化装置的吸水率进行比较。使用树脂复合材料作为对照。对于每种材料(Fuji II LC改良,Vitremer和Filtek Z250)和固化单元(Radii和Optilight Plus)的每种组合,准备了五个直径为15.0 mm x高为1.0 mm的样品,并转移至干燥器中直至获得恒定质量。然后将样品浸入去离子水中7天,称重并在干燥器中重新调节至恒定质量。根据样品的重量和体积计算吸水率。通过双向方差分析和Tukey检验分析数据(p <0.05)。用LED光固化的标本比用卤素光光固化的标本具有更高的吸水率。在统计上,RMGIC吸收的水比树脂复合材料多得多。光固化单元的类型影响RMGIC的吸水特性。

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