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Comparison of Surface Hardness of Various Shades of Twinky Star Colored Compomer Light-cured with QTH and LED Units

机译:QTH和LED单元光固化的星型彩色复合体各种阴影下表面硬度的比较

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Introduction Colored compomers are a group of restorative materials that were introduced in 2002 to repair primary teeth, and they provide attractive color and ease of use in pediatric dentistry. The aim of this study was to evaluate the effect of QTH and LED light-curing units on the surface hardness of different colors of Twinky Star compomers. Methods In this experimental study, a composite resin (Z250, 3M, and USA), an ionosit compomer (DMG, Germany) with A3 shade and 8 different Twinky Star colored compomer (Voco, Germany) samples were used. In all, 100 samples were prepared with 10 samples in each group, i.e., 10 Z250 composite resin, 10 ionosit compomers, and 10 Twinky Star compomer samples of each color. The samples were prepared in a 4×4-mm Teflon mold. Half of the samples were light-cured with QTH and the other half with LED units. Then, the surface microhardness was measured by Vickers hardness test. The data were analyzed with IBM-SPSS version 22, using the t-test and ANOVA. Results Two-way ANOVA showed that the mean surface hardness of the compomer samples cured with the QTH unit was significantly higher than that cured with the LED unit (p < 0.001). In each curing unit, surface hardness of some materials exhibited significant differences with the highest hardness being observed in the Z250 composite resin (650.35 ± 56.320) and the lowest hardness being detected in the ionosit compomers (461.10 ± 96.170). One-way ANOVA also showed that, among the different colors of the Twinky Star compomer, the lowest hardness with both units (QTH and LED) was observed in the gold color (214.32 ± 22.026 and 175.116 ± 15.918, respectively). Conclusion The colored compomer and the type of light-curing unit affected the microhardnesses of the surfaces. Different colors of Twinky Star compomers exhibited different surface microhardnesses.
机译:简介有色复合物是一组修复材料,于2002年推出,用于修复乳牙,它们具有诱人的颜色,并且易于在儿科牙科中使用。这项研究的目的是评估QTH和LED光固化单元对Twinky Star复合体不同颜色的表面硬度的影响。方法在本实验研究中,使用了复合树脂(Z250、3M和USA),具有A3阴影的离子型复合物(DMG,德国)和8种不同的Twinky Star彩色复合物(Voco,德国)样品。总共制备了100个样品,每组10个样品,即每种颜色的10个Z250复合树脂,10个离子型复合物和10个Twinky Star复合物样品。样品在4×4-mm特氟隆模具中制备。一半样品用QTH光固化,另一半样品用LED单元光固化。然后,通过维氏硬度试验测量表面显微硬度。使用t检验和ANOVA,使用IBM-SPSS 22版对数据进行了分析。结果双向方差分析表明,用QTH单元固化的复合体样品的平均表面硬度明显高于用LED单元固化的复合体样品的平均表面硬度(p <0.001)。在每个固化单元中,某些材料的表面硬度表现出显着差异,在Z250复合树脂中观察到最高的硬度(650.35±56.320),在离子渗透复合体中观察到的最低硬度(461.10±96.170)。单向方差分析还显示,在Twinky Star复合体的不同颜色中,两种颜色(QTH和LED)的最低硬度分别为金色(分别为214.32±22.026和175.116±15.918)。结论着色的共聚体和光固化单元的类型会影响表面的显微硬度。 Twinky Star复合体的不同颜色表现出不同的表面显微硬度。

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