Department of Operative Dentistry, School of Dentistry, University of São Paulo, São Paulo, USP, Brazil.
Lasers Med Sci. 2011 Jul;26(4):421-5. doi: 10.1007/s10103-010-0785-x. Epub 2010 May 28.
The aim of this study was to define optimal power settings as well as curing time associated with evaluating the curing depth of a composite resin as a function of Vickers hardness. The tests were performed with a hybrid composite resin cured with a halogen lamp and argon ion laser, with different exposure times and power settings. The composite resin bulk technique was used using a black polypropylene matrix with thicknesses ranging from 1 to 4 mm and Vickers microhardness was measured on the opposite surface of the light activation. ANOVA and Tukey statistical tests were used. The results showed that the groups activated by the laser for 20 s, at 200 and 250 mW, did not present statistically significant differences regarding the halogen lamp with 1 mm thickness, but the halogen lamp showed better results with thickness values more than 2 mm (p < 0.05).
本研究旨在确定最佳功率设置和固化时间,以评估复合树脂的固化深度与维氏硬度的关系。使用卤素灯和氩离子激光对混合复合树脂进行了测试,采用不同的曝光时间和功率设置。采用黑色聚丙烯基质进行复合树脂整体技术,基质厚度为 1 至 4 毫米,在光激活的相反表面测量维氏硬度。采用方差分析和 Tukey 统计检验。结果表明,激光照射 20 秒,功率为 200 和 250 mW 的各组与厚度为 1 毫米的卤素灯相比,没有统计学上的显著差异,但卤素灯在厚度值大于 2 毫米时表现出更好的结果(p<0.05)。