Calheiros Fernanda Calabró, Sadek Fernanda Tranchesi, Braga Roberto Ruggiero, Cardoso Paulo Eduardo Capel
Department of Dental Materials, School of Dentistry, University of São Paulo, 2227 São Paulo, SP 05508-900, Brazil.
J Dent. 2004 Jul;32(5):407-12. doi: 10.1016/j.jdent.2004.01.014.
The aim of this study was to compare the behavior of two new, low-shrinkage hybrid composites (Aelite LS and Inten-S) with a microfilled (Heliomolar) and a hybrid composite (Filtek Z250), in terms of polymerization contraction stress and microleakage.
Maximum contraction stress after 10 min was recorded in a "tensilometer", using a C-factor (C) of 2.5 and energy density of 26 J/cm(2). For the microleakage test, cylindrical cavities with enamel margins prepared in bovine incisors (4 mm diameter, 1.5 mm depth, C = 2.5) were restored in bulk, applying the same energy density used in the contraction stress test. After immersion in 0.5% methylene blue for 4 h, specimens were sectioned twice, perpendicularly, and the highest dye penetration score was recorded. Contraction stress results were analyzed by one-way ANOVA/Tukey's test and microleakage was analyzed by Kruskal-Wallis test. Regression analysis between the two variables was also performed.
Aelite LS showed significantly higher stress than the other composites tested. Inten-S and Filtek Z250 had similar stress levels, statistically higher than Heliomolar. In the microleakage test, a significant difference was observed between Aelite LS and Heliomolar only. Regression analysis showed a good linear correlation between the two variables (R2(adjusted) = 0.811).
The low-shrinkage materials exhibited contraction stress values similar or higher than the hybrid composite. A direct relationship between contraction stress values and microleakage for the composites evaluated was verified.
The low-shrinkage composites tested did not seem to represent an improvement in terms of reducing contraction stress or microleakage.
本研究旨在比较两种新型低收缩混合复合材料(Aelite LS和Inten - S)与一种微填料复合材料(Heliomolar)和一种混合复合材料(Filtek Z250)在聚合收缩应力和微渗漏方面的表现。
使用C因子(C)为2.5且能量密度为26 J/cm²,在“拉力计”中记录10分钟后的最大收缩应力。对于微渗漏测试,在牛切牙上制备边缘为釉质的圆柱形窝洞(直径4 mm,深度1.5 mm,C = 2.5),采用与收缩应力测试相同的能量密度进行整体修复。在0.5%亚甲蓝中浸泡4小时后,将标本垂直切割两次,记录最高染料渗透评分。收缩应力结果采用单因素方差分析/ Tukey检验进行分析,微渗漏采用Kruskal - Wallis检验进行分析。还对两个变量进行了回归分析。
Aelite LS显示出比其他测试复合材料显著更高的应力。Inten - S和Filtek Z250具有相似的应力水平,在统计学上高于Heliomolar。在微渗漏测试中,仅在Aelite LS和Heliomolar之间观察到显著差异。回归分析表明两个变量之间存在良好的线性相关性(调整后R² = 0.811)。
低收缩材料表现出的收缩应力值与混合复合材料相似或更高。验证了所评估复合材料的收缩应力值与微渗漏之间的直接关系。
所测试的低收缩复合材料在降低收缩应力或微渗漏方面似乎并未表现出改善。