Effect of different placement techniques on color stability and surface roughness of resin composites

Fernanda Kerpel, Anja Bamberg, G. Nicoloso, L. Miotti, Andressa Dalmolin, L. A. Swarowsky, M. Marquezan, L. B. Durand
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引用次数: 1

Abstract

Abstract Introduction Longevity and clinical success of dental restorations can be influenced by many factors during the restorative procedures. Objective This study aimed to evaluate the influence of different placement techniques on color stability and surface roughness of two resin composites. Material and method The groups of specimens (n=10) were divided according to resin composite (FiltekTM Z250 XT and FiltekTM Z350 XT) and placement technique: Mylar strip, spatula, dry brush, modeling liquid, and surface sealant. Color stability and surface roughness were accessed using a spectrophotometer (CIELab color space) and a rugosimeter (standard cutoff of 0.8 mm), respectively, after water storage. Subsequently, the specimens were immersed in coffee for 48 h and final color was measured. The data were analyzed using ANOVA and the Tukey’s post hoc test (α=5%) and the correlation between surface roughness (Ra) and color change (∆Eab) was assessed using the Pearson’s correlation coefficient. Result The different placement techniques influenced Ra and ∆Eab on both resin composites. The groups treated with surface sealant showed greater difference in ∆Eab for both resin composites. The FiltekTM Z250 XT resin showed greater color stability compared with the FiltekTM Z350 XT resin regardless of the placement technique used. Ra of each placement technique was similar among the resin composites except for the FiltekTM Z350 XT modeling liquid group, which presented lower Ra values compared with those of FiltekTM Z250 XT. A correlation between Ra and staining was identified (p=0.268). Conclusion Color stability and Ra are influenced by different placement techniques.
不同放置工艺对树脂复合材料颜色稳定性和表面粗糙度的影响
摘要:牙体修复过程中影响牙体修复寿命和临床成功的因素很多。目的研究不同放置方式对两种树脂复合材料颜色稳定性和表面粗糙度的影响。材料和方法按树脂复合材料(FiltekTM Z250 XT和FiltekTM Z350 XT)和放置方法(聚酯薄膜条、抹刀、干刷、造型液、表面密封胶)分组(n=10)。水储存后,分别使用分光光度计(CIELab色彩空间)和粗糙度计(标准截止为0.8 mm)测量颜色稳定性和表面粗糙度。随后,将样品浸泡在咖啡中48小时,并测量最终颜色。采用方差分析和Tukey事后检验(α=5%)对数据进行分析,采用Pearson相关系数评估表面粗糙度(Ra)与颜色变化(∆Eab)之间的相关性。结果不同放置方式对两种树脂复合材料的Ra和∆Eab均有影响。表面密封胶处理组两种树脂复合材料的∆Eab差异较大。与FiltekTM Z250 XT树脂相比,无论采用何种放置技术,FiltekTM Z250 XT树脂都表现出更高的颜色稳定性。除FiltekTM Z350 XT建模液组Ra值低于FiltekTM Z250 XT组外,各树脂复合材料的Ra值相似。Ra与染色之间存在相关性(p=0.268)。结论不同放置方式对颜色稳定性和Ra含量有影响。
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