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Effect of various teas on color stability of resin composites

机译:各种茶叶对树脂复合材料颜色稳定性的影响

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Purpose: To investigate the effect of various teas on color stability of resin composites. Methods: Two methacrylate-based (Arabesk Top, Grandio) and a silorane-based (Filtek Silorane) resin composites were used. 110 cylindrical samples of each resin composite were prepared (2 mm thickness and 8 mm diameter), polished and stored in distilled water (37 degrees C for 24 hours). They were randomly divided into 11 groups (n= 10) and color measurements were taken. Then the samples were immersed in tap water (control), a black tea, a green tea or one of the eight herbal-fruit teas (37 degrees C for 1 week) and subsequently subjected to the final color measurements. The color change of samples (Delta E*) was calculated, data were subjected to two-way ANOVA and Tukey's HSD tests. Results: Teas, resin composites and their interactions were significant (P= 0.000). All the teas and control caused color changes in all three resin composites. Rosehip tea caused the most color changes, while tap water showed the least in all resin composites. Arabesk Top had the most staining potential in all the teas and control, whereas Filtek Silorane was the most stain resistant except Grandio immersed in sage tea. Color stability of all resin composites used were affected from both structure of resin materials and constituents of teas used. All resin composites were susceptible to staining by all teas especially rosehip tea. Arabesk Top composite showed the greatest color susceptibility in all teas and Filtek Silorane the least with one exception.
机译:目的:探讨各种茶叶对树脂复合材料颜色稳定性的影响。方法:使用两种基于甲基丙烯酸酯(阿拉伯克莱克顶,Grandio)和基于硅烷类(Filtek硅烷)树脂复合材料。将每种树脂复合材料的110圆柱形样品(2mm厚,直径为8mm),抛光并储存在蒸馏水(37℃24小时)。将它们随机分为11组(n = 10)和颜色测量。然后将样品浸入自来水(对照),红茶,绿茶或八个草药茶(37摄氏度1周)中,随后进行最终的颜色测量。计算样本(Delta E *)的颜色变化,对数据进行双向ANOVA和Tukey的HSD测试。结果:茶,树脂复合材料及其相互作用显着(P = 0.000)。所有茶和控制导致所有三种树脂复合材料中的颜色变化。玫瑰果茶导致颜色变化最大,而自来水在所有树脂复合材料中至少显示出至少。 Arabesk Top在所有茶和控制中具有最染色的潜力,而Filtek硅烷是最具污点的抗污剂,除了祖先浸入鼠尾草茶中。所使用的所有树脂复合材料的颜色稳定性受到使用的树脂材料的两种结构和所用茶的组分的影响。所有树脂复合材料均易于被茶尤其茶壶染色。 Arabesk Top Composite最少显示所有茶和Filtek硅烷中最大的颜色易感性,至少有一个例外。

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