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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
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作者 Pnina Segal Diva Lugassy +4 位作者 Eitan Mijiritsky Michal Dekel Ariel Ben-Amar Zeev Ormianer Shlomo Matalon 《Materials Sciences and Applications》 2015年第11期1071-1083,共13页
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 measu... 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. 展开更多
关键词 light-curING DEVICES Nano-Filled resin composites MICROHARDNESS
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2种复合树脂修复前牙龋损的临床效果评估 被引量:10
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作者 彭彩燕 郭伟灵 《口腔材料器械杂志》 2019年第1期34-37,共4页
目的探讨2种复合树脂修复前牙龋损的临床效果。方法选取100例前牙龋损患者,依据随机数字法将其分为实验组与对照组,每组各50例。实验组应用复合树脂多层充填技术和3 M-Z350(A2/A3)纳米复合树脂充填,对照组选用卡瑞斯玛光固化复合树脂充... 目的探讨2种复合树脂修复前牙龋损的临床效果。方法选取100例前牙龋损患者,依据随机数字法将其分为实验组与对照组,每组各50例。实验组应用复合树脂多层充填技术和3 M-Z350(A2/A3)纳米复合树脂充填,对照组选用卡瑞斯玛光固化复合树脂充填,1年后比较2组的修复成功率、不良反应及患者满意度。结果实验组的美观满意度、治疗成功率均高于对照组(P<0.05);实验组不良反应发生率低于对照组(P<0.05)。结论纳米复合树脂材料可大大提高前牙龋损患者美观满意度,提高修复成功率,减少不良反应的发生情况,值得临床推广应用。 展开更多
关键词 纳米复合树脂 瑞斯玛光固化复合树脂 成功率 前牙龋损
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