Aguiar Flávio Henrique Baggio, Braceiro Aline, Lima Débora Alves Nunes Leite, Ambrosano Gláucia Maria Bovi, Lovadino José Roberto
Department of Restorative Dentistry, Piracicaba School of Dentistry, Campinas State University, Sao Paulo, Brazil.
J Contemp Dent Pract. 2007 Sep 1;8(6):1-8.
The aim of this in vitro study was to evaluate the influence of light curing modes and curing time on the microhardness of a hybrid composite resin.
Forty-five Z250 composite resin specimens (3M-ESPE Dental Products, St. Paul, MN, USA) were randomly divided into nine groups (n=5): three polymerization modes (conventional-550 mW/cm2; light-emitting diodes (LED)-360 mW/cm2, and high intensity-1160 mW/cm2) and three light curing times (once, twice, and three times the manufacturer's recommendations). All samples were polymerized with the light tip 8 mm from the specimen. Knoop microhardness measurements were obtained on the top and bottom surfaces of the sample.
Conventional and LED polymerization modes resulted in higher hardness means and were statistically different from the high intensity mode in almost all experimental conditions. Tripling manufacturers' recommended light curing times resulted in higher hardness means; this was statistically different from the other times for all polymerization modes in the bottom surface of specimens. This was also true of the top surface of specimens cured using the high intensity mode but not of conventional and LED modes using any of the chosen curing times. Top surfaces showed higher hardness than bottom surfaces.
It is important to increase the light curing time and use appropriate light curing devices to polymerize resin composite in deep cavities to maximize the hardness of hybrid composite resins.
本体外研究旨在评估光固化模式和固化时间对混合复合树脂显微硬度的影响。
将45个Z250复合树脂标本(美国明尼苏达州圣保罗市3M-ESPE牙科产品公司)随机分为9组(每组n = 5):三种聚合模式(传统模式-550 mW/cm²;发光二极管(LED)-360 mW/cm²,高强度模式-1160 mW/cm²)和三种光固化时间(制造商推荐时间的1倍、2倍和3倍)。所有样本均使用距离标本8 mm的光固化头进行聚合。在样本的顶面和底面进行努氏显微硬度测量。
在几乎所有实验条件下,传统和LED聚合模式导致更高的硬度平均值,并且与高强度模式在统计学上存在差异。将制造商推荐的光固化时间增加两倍会导致更高的硬度平均值;在标本底面,这在所有聚合模式下与其他时间在统计学上存在差异。对于使用高强度模式固化的标本顶面也是如此,但对于使用任何选定固化时间的传统和LED模式则不然。顶面显示出比底面更高的硬度。
增加光固化时间并使用合适的光固化设备来聚合深窝洞中的树脂复合材料,以最大化混合复合树脂的硬度,这一点很重要。