Peris Alessandra Rezende, Mitsui Fabio Hiroyuki Ogata, Amaral Cristiane Mariote, Ambrosano Gláucia Maria Bovi, Pimenta Luiz André Ferire
Department of Restorative Dentistry, University of Campinas, School of Dentistry of Piraciaba, Sao Paulo, Brazil.
Oper Dent. 2005 Sep-Oct;30(5):649-54.
This study evaluates the Knoop microhardness of resin composites cured with different light-emitting diode (LED) based light curing units (LCU) or with a conventional quartz-tungsten-halogen light (QTH). Ten experimental groups with 10 specimens each were used. The specimens were prepared by placing two light-cured resin composites with similar VITA shade A2-microhybrid Filtek Z250/3M ESPE and microfill Durafil VS/Heraeus Kulzer--in a 2.0 mm-thick disc shaped mold. The specimens were polymerized for 40 seconds with the use of one QTH LCU (Optilux 501/Kerr-Demetron) and four LED LCUs: Elipar FreeLight 1 Cordless LED (3M ESPE), Ultrablue II LED with cord (DMC), Ultrablue III LED cordless (DMC) and LEC 470 I (MM Optics). Knoop microhardness was determined at the top and bottom surfaces of the specimens 24 hours following curing. Microhardness values in the microhybrid resin composite group showed no statistically significant differences when cured with LED FreeLight 1 LCU and QTH LCU (p<0.05). The other LED devices evaluated in the study presented lower microhardness values in both surfaces (p<0.05) when compared to QTH. In the microfill resin composite group, no statistically significant differences were observed among all LCUs evaluated on the bottom surfaces (p<0.05). However, on the top surfaces, QTH presented the highest KHN values, and the LED devices presented similar results when compared with KHN values relative to each other (p<0.05).
本研究评估了用不同的基于发光二极管(LED)的光固化机(LCU)或传统石英钨卤素灯(QTH)固化的树脂复合材料的努氏显微硬度。使用了10个实验组,每组10个样本。样本通过将两种具有相似VITA A2色的光固化树脂复合材料——微混合型Filtek Z250/3M ESPE和微填料型Durafil VS/Heraeus Kulzer——放置在一个2.0毫米厚的圆盘形模具中制备而成。样本使用一台QTH LCU(Optilux 501/Kerr-Demetron)和四台LED LCU进行40秒的聚合:无绳LED Elipar FreeLight 1(3M ESPE)、带线Ultrablue II LED(DMC)、无绳Ultrablue III LED(DMC)和LEC 470 I(MM Optics)。在固化24小时后,测定样本顶面和底面的努氏显微硬度。当用LED FreeLight 1 LCU和QTH LCU固化时,微混合树脂复合材料组的显微硬度值无统计学显著差异(p<0.05)。与QTH相比,本研究中评估的其他LED设备在两个表面的显微硬度值均较低(p<0.05)。在微填料树脂复合材料组中,在所有评估的LCU的底面未观察到统计学显著差异(p<0.05)。然而,在顶面上,QTH呈现出最高的努氏硬度值,与彼此的努氏硬度值相比,LED设备呈现出相似的结果(p<0.05)。