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Effect of curing mode on the hardness of dual-cured composite resin core build-up materials

机译:固化方式对双固化复合树脂芯堆积材料硬度的影响

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This study evaluated the Knoop Hardness (KHN) values of two dual-cured composite resin core build-up materials and one resin cement exposed to different curing conditions. Two dual-cured core build-up composite resins (LuxaCore?-Dual, DMG; and FluoroCore?2, Dentsply Caulk), and one dual-cured resin cement (Rely X ARC, 3M ESPE) were used in the present study. The composite materials were placed into a cylindrical matrix (2 mm in height and 3 mm in diameter), and the specimens thus produced were either light-activated for 40 s (Optilux 501, Demetron Kerr) or were allowed to self-cure for 10 min in the dark (n = 5). All specimens were then stored in humidity at 37°C for 24 h in the dark and were subjected to KHN analysis. The results were submitted to 2-way ANOVA and Tukey's post-hoc test at a pre-set alpha of 5%. All the light-activated groups exhibited higher KHN values than the self-cured ones (p = 0.00001), regardless of product. Among the self-cured groups, both composite resin core build-up materials showed higher KHN values than the dual-cured resin cement (p = 0.00001). LuxaCore?-Dual exhibited higher KHN values than FluoroCore?2 (p = 0.00001) when they were allowed to self-cure, while no significant differences in KHN values were observed among the light-activated products. The results suggest that dual-cured composite resin core build-up materials may be more reliable than dual-cured resin cements when curing light is not available.
机译:这项研究评估了两种双固化复合树脂芯料和一种树脂水泥在不同固化条件下的努氏硬度(KHN)值。在本研究中使用了两种双固化芯堆积复合树脂(LuxaCore?-Dual,DMG;和FluoroCore?2,Dentsply Caulk)和一种双固化树脂水泥(Rely X ARC,3M ESPE)。将复合材料放入圆柱状的基体(高2 mm,直径3 mm)中,将由此产生的样品光活化40 s(Optilux 501,Demetron Kerr)或自固化10 s。分钟在黑暗中(n = 5)。然后将所有标本在黑暗中于37°C的湿度下保存24小时,然后进行KHN分析。将结果以预设5%的alpha值进行2-way ANOVA和Tukey的事后测试。无论产品如何,所有光活化基团均显示出比自固化基团更高的KHN值(p = 0.00001)。在自固化组中,两种复合树脂芯堆积材料均显示出比双固化树脂胶浆更高的KHN值(p = 0.00001)。当允许其自固化时,LuxaCore?-Dual的KHN值高于FluoroCore?2(p = 0.00001),而在光活化产品中,未观察到KHN值的显着差异。结果表明,在没有固化光的情况下,双固化复合树脂芯堆积材料可能比双固化树脂水泥更可靠。

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