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The Effect of the Light Intensity and Light Distances of LED and QTH Curing Devices on the Hardness of Two Light-Cured Nano-Resin Composites

机译:LED和QTH固化装置的光强度和光距对两种光固化纳米树脂复合材料硬度的影响

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Background: Effective polymerization of the composite resin is essential to obtain long term clinical success and has a great importance obtaining improved mechanical properties. The purpose of this study was to measure the effect of the light intensity of LED and QTH curing devices in relation to the light distances, on the hardness (KHN) of two light cure nano-resin composite. Material and Methods: The top and bottom surfaces of the two nanofill composite specimens were evaluated. Two LED and two QTH light curing devices were used at nine different distances. Light intensity was measured with two radiometers placed at these same distances from the curing tip. 360 pvc dies were prepared with circular cavity 3 mm in diameter and 2 mm thick. The tested materials were placed in each cavity. The different light curing distances were standardized by adding pvc spacers dies at different height matching the different distances. Top and bottom surface microhardness were evaluated with a Micro Hardness Tester in knoop hardness numbers (Kg/mm2). Data were statistically analyzed using: Three-way ANOVA, Tukey and Pearsons test. Results: It was revealed that there was a statistically significant difference in microhardness between the composites (p < 0.001), between the nine distances (p < 0.001) and between the four light curing devices (p < 0.001). Increasing the distance of the light source from composite resin, the light intensity and the microhardness values at the top and bottom surface decrease. LED light curing devices produced a greater microhardness results at the bottom surface of the specimens. The Filtek Ultimate nanocomposite (3 m) showed highest microhardness values on the top and bottom surfaces, polymerized with all four curing devices and all nine distances compared to Empress Direct nano composite (Ivoclar vivadent). Clinical significant: Even with high power LED curing light, the distance between the tip of the light source and the restoration surface should be as close as possible. In this study, Filtek Ultimate showed better results (highest microhardness values) than Empress Direct.
机译:背景:复合树脂的有效聚合对于获得长期的临床成功是必不可少的,并且对于获得改善的机械性能至关重要。这项研究的目的是测量LED和QTH固化设备的光强度与光距的关系,对两种光固化纳米树脂复合材料的硬度(KHN)。材料和方法:评价了两个纳米填充复合材料样品的顶面和底面。在九个不同的距离处使用了两个LED和两个QTH光固化设备。用两个辐射计在距固化尖端相同距离处测量光强度。制备360个pvc模具,其具有3mm直径和2mm厚的圆形腔。将测试的材料放置在每个腔中。通过在不同高度匹配不同距离的pvc间隔物模具中标准化不同的光固化距离。用显微硬度计以努氏硬度值(Kg / mm 2)评价顶面和底面的显微硬度。使用以下方法对数据进行统计学分析:三向ANOVA,Tukey和Pearsons检验。结果:发现复合材料之间,九个距离之间(p <0.001)和四个光固化装置之间(p <0.001)的显微硬度有统计学上的显着差异。光源与复合树脂的距离增加,顶面和底面的光强度和显微硬度值降低。 LED光固化设备在样品的底部表面产生了更高的显微硬度结果。与Empress Direct纳米复合材料(Ivoclar vivadent)相比,Filtek Ultimate纳米复合材料(3 m)在顶部和底部表面均显示出最高的显微硬度值,并通过所有四个固化装置和所有九个距离进行聚合。临床意义:即使使用大功率LED固化灯,光源尖端与修复表面之间的距离也应尽可能近。在这项研究中,Filtek Ultimate比Empress Direct显示出更好的结果(最高显微硬度值)。

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