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The effects of halogen and light-emitting diode light curing on the depth of cure and surface microhardness of composite resins

机译:卤素和发光二极管光固化对复合树脂固化深度和表面显微硬度的影响

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Aim:Light-emitting diode light curing units (LED LCUs) have become more popular than halogen LCUs in routine dental restorative treatment. The aim of the study was to compare the effects of two conventional halogen (Hilux Plus and VIP) and two LED (Elipar FreeLight 2 and Smart Lite) light curing units on the depth of cure and the microhardness of various esthetic restorative materials.Materials and Methods:The curing depth and microhardness of a compomer (Dyract Extra), a resin-modified glass ionomer (Vitremer), a packable composite (Sculpt It), an ormocer (Admira), a hybrid composite (Tetric Ceram), two microhybrid composites (Miris and Clearfil Photo Posterior) and, a nanofil composite (Filtek Supreme) were determined using a scraping method and a hardness tester. A total of 320 samples were prepared using the eight different materials (n = 10 samples for each subgroup). The scraping test was based on ISO 4049:2000. Vicker's microhardness testing was carried out using hardness tester (Zwick 3212). Data were analyzed using one-way analysis of variance (ANOVA), Bonferroni and the Kolmogorov–Smirnov tests.Results:Best microhardness results were obtained with the LED light curing units and Tetric EvoCeram and Filtek Supreme achieved the highest hardness values. The nanofil composite, Filtek Supreme, showed the best curing depth results in all the tested light curing systems.Conclusions:The LEDs were found to be more successful than the halogen units with respect to both curing depth and microhardness properties.
机译:目的:在常规的牙齿修复治疗中,发光二极管光固化单元(LED LCU)比卤素LCU更受欢迎。这项研究的目的是比较两种传统卤素灯(Hilux Plus和VIP)和两种LED(Elipar FreeLight 2和Smart Lite)光固化单元对各种美学修复材料的固化深度和显微硬度的影响。方法:复合物(Dyract Extra),树脂改性的玻璃离聚物(Vitremer),可填充复合物(Sculpt It),抗癌剂(Admira),杂化复合物(Tetric Ceram),两种微杂化复合物的固化深度和显微硬度(Miris和Clearfil Photo Posterior)和nanofil复合材料(Filtek Supreme)使用刮擦法和硬度测试仪确定。使用八种不同的材料准备了总共320个样品(每个子组n = 10个样品)。刮擦测试基于ISO 4049:2000。使用硬度测试仪(Zwick 3212)进行维氏显微硬度测试。使用单向方差分析(ANOVA),邦费罗尼(Bonferroni)和Kolmogorov-Smirnov测试对数据进行分析。结果:使用LED光固化单元可获得最佳显微硬度结果,Tetric EvoCeram和Filtek Supreme达到了最高硬度值。 Nanofil复合材料Filtek Supreme在所有测试的光固化系统中均显示出最佳的固化深度结果。结论:就固化深度和显微硬度而言,LED比卤素单元更成功。

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