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固化设备和粘接系统对复合树脂修复体边缘适合性的影响。

Effect of curing unit and adhesive system on marginal adaptation of composite restorations.

作者信息

Casselli Denise Sa Maia, Faria-e-Silva Andre Luis, Casselli Henrique, Martins Luis Roberto Marcondes

机构信息

Department of Dentistry, Campus of Sobral, Federal University of Ceara, Sobral, Ceara, Brazil.

出版信息

Gen Dent. 2012 Nov-Dec;60(6):e408-12.

Abstract

This study sought to evaluate how a curing unit and adhesive system affected the marginal adaptation of resin composite restorations. Class V cavities were prepared in bovine teeth with a gingival margin in dentin and an incisal margin in enamel. The cavities were restored with a micro-hybrid resin composite using one of four adhesives: Single Bond 2, Prime & Bond NT, Clearfil SE Bond, Xeno IV. The light-activations were performed using a quartz-tungsten-halogen (QTH) lamp or a second-generation light-emitting diode (LED). Restorations were finished and polished and epoxy replicas were prepared. Marginal adaptation was analyzed by using scanning electronic microscopy (magnification 500X). The widest gaps in each margin were recorded, and data were submitted to Kruskal-Wallis, Mann-Whitney, and Wilcoxon tests (α = 0.05). Differences between the adhesives were observed only when the dentin margins were evaluated: Clearfil SE Bond demonstrated better marginal adaptation than Prime & Bond NT or Single Bond 2 (which demonstrated the widest gaps in the dentin margin). The type of curing unit only affected the results for Xeno IV when the enamel margin was analyzed; the LED lamp promoted smaller gaps than the QTH lamp.

摘要

本研究旨在评估固化设备和粘结系统如何影响树脂复合材料修复体的边缘适合性。在牛牙上制备V类洞,龈缘位于牙本质,切缘位于釉质。使用四种粘结剂之一(Single Bond 2、Prime & Bond NT、Clearfil SE Bond、Xeno IV),用微混合树脂复合材料修复这些洞。使用石英卤钨灯(QTH)或第二代发光二极管(LED)进行光固化。修复体完成并抛光后制备环氧树脂复制品。使用扫描电子显微镜(放大倍数500倍)分析边缘适合性。记录每个边缘的最宽间隙,并将数据进行Kruskal-Wallis、Mann-Whitney和Wilcoxon检验(α = 0.05)。仅在评估牙本质边缘时观察到粘结剂之间的差异:Clearfil SE Bond显示出比Prime & Bond NT或Single Bond 2更好的边缘适合性(Prime & Bond NT和Single Bond 2在牙本质边缘显示出最宽的间隙)。当分析釉质边缘时,固化设备类型仅影响Xeno IV的结果;LED灯比QTH灯产生的间隙更小。

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