Borges Boniek C D, Souza-Junior Eduardo J, Catelan Anderson, Ambrosano Gláucia M B, Paulillo Luís A M S, Aguiar Flávio H B
Department of Restorative Dentistry, Piracicaba Dental School, State University of Campinas (UNICAMP), Piracicaba, SP, Brazil.
Acta Odontol Latinoam. 2011;24(1):47-51.
Physical properties such as surface hardness of dental materials are directly linked to their clinical behavior. The aim of this study was to investigate the influence of extended curing time on the polymerization depth offluoride-containing materials used as pit and fissure sealants. Conventional and extended exposure times (20 and 60 seconds) were used to photoactivate a gold-standard pit and fissure sealant (Fluroshield, Dentsply) and a flowable composite (PermaFlo, Ultradent). Twenty square-shaped samples (n=5) were prepared using a LED device (Bluephase 16i, Ivoclar). The Knoop Hardness Number (KHN) was calculated for the top and bottom surface of each sample 24 hours after polymerization. Bottom/top hardness ratio (B/T KHN) was than calculated. Averages were analyzed by two-way ANOVA and Tukey test (alpha=0.05). The flowable composite had higher KHN than conventional pit and fissure sealant for all experimental conditions (p<0.05). The 60-second photoactivation time increased KHN at the bottom surface and B/T KHN only of composite specimens. The flowable composite had better physical properties than the pit and fissure sealant, and they were improved by extended curing time.
牙科材料的物理性能,如表面硬度,与其临床性能直接相关。本研究的目的是调查延长固化时间对用作窝沟封闭剂的含氟材料聚合深度的影响。采用常规曝光时间和延长曝光时间(20秒和60秒)对一种金标准窝沟封闭剂(弗洛护盾,登士柏公司)和一种流动复合树脂(永久流动,优创公司)进行光活化。使用发光二极管装置(蓝相16i,义获嘉公司)制备20个方形样本(n = 5)。聚合24小时后,计算每个样本顶面和底面的努氏硬度值(KHN)。然后计算底面/顶面硬度比(B/T KHN)。采用双向方差分析和Tukey检验(α = 0.05)分析平均值。在所有实验条件下,流动复合树脂的KHN均高于传统窝沟封闭剂(p < 0.05)。60秒的光活化时间仅增加了复合树脂样本底面的KHN和B/T KHN。流动复合树脂的物理性能优于窝沟封闭剂,延长固化时间可改善其性能。