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三种粘结剂粘结复合树脂与Er,Cr:YSGG激光预备牙釉质的剪切粘结强度。

Shear bond strength of composite bonded with three adhesives to Er,Cr:YSGG laser-prepared enamel.

作者信息

Türkmen Cafer, Sazak-Oveçoğlu Hesna, Günday Mahir, Güngör Gülşad, Durkan Meral, Oksüz Mustafa

机构信息

Department of Operative Dentistry, Faculty of Dentistry, University of Marmara, Istanbul, Turkey.

出版信息

Quintessence Int. 2010 Jun;41(6):e119-24.

Abstract

OBJECTIVE

To assess in vitro the shear bond strength of a nanohybrid composite resin bonded with three adhesive systems to enamel surfaces prepared with acid and Er,Cr:YSGG laser etching.

METHOD AND MATERIALS

Sixty extracted caries- and restoration-free human maxillary central incisors were used. The teeth were sectioned 2 mm below the cementoenamel junction. The crowns were embedded in autopolymerizing acrylic resin with the labial surfaces facing up. The labial surfaces were prepared with 0.5-mm reduction to receive composite veneers. Thirty specimens were etched with Er,Cr:YSGG laser. This group was also divided into three subgroups, and the following three bonding systems were then applied on the laser groups and the other three unlased groups: (1) 37% phosphoric acid etch + Bond 1 primer/adhesive (Pentron); (2) Nano-bond self-etch primer (Pentron) + Nano-bond adhesive (Pentron); and (3) all-in-one adhesive-single dose (Futurabond NR, Voco). All of the groups were restored with a nanohybrid composite resin (Smile, Pentron). Shear bond strength was measured with a Zwick universal test device with a knife-edge loading head. The data were analyzed with two-factor ANOVA.

RESULTS

There were no significant differences in shear bond strength between self-etch primer + adhesive and all-in-one adhesive systems for nonetched and laser-etched enamel groups (P > .05). However, bond strength values for the laser-etched + Bond 1 primer/adhesive group (48.00 +/- 13.86 MPa) were significantly higher than the 37% phosphoric acid + Bond 1 primer/adhesive group (38.95 +/- 20.07 MPa) (P < .05).

CONCLUSION

The Er,Cr:YSGG laser-powered hydrokinetic system etched the enamel surface more effectively than 37% phosphoric acid for subsequent attachment of composite material.

摘要

目的

在体外评估一种纳米混合复合树脂与三种粘结系统粘结到经酸蚀和铒铬:钇-钪-镓石榴石(Er,Cr:YSGG)激光蚀刻的釉质表面的剪切粘结强度。

方法和材料

使用60颗拔除的无龋损和修复的人类上颌中切牙。牙齿在牙骨质釉质界下方2mm处截断。牙冠嵌入自凝丙烯酸树脂中,唇面朝上。唇面预备0.5mm的磨除量以容纳复合贴面。30个样本用Er,Cr:YSGG激光蚀刻。该组也分为三个亚组,然后在激光组和其他三个未激光蚀刻组上应用以下三种粘结系统:(1)37%磷酸蚀刻+Bond 1底漆/粘结剂(Pentron);(2)纳米粘结自酸蚀底漆(Pentron)+纳米粘结粘结剂(Pentron);(3)一体式粘结剂-单剂量(Futurabond NR,Voco)。所有组均用纳米混合复合树脂(Smile,Pentron)修复。使用带有刀口加载头的Zwick万能测试装置测量剪切粘结强度。数据用双因素方差分析进行分析。

结果

对于未蚀刻和激光蚀刻的釉质组,自酸蚀底漆+粘结剂和一体式粘结剂系统之间的剪切粘结强度没有显著差异(P>.05)。然而,激光蚀刻+Bond 1底漆/粘结剂组的粘结强度值(48.00±13.86MPa)显著高于37%磷酸+Bond 1底漆/粘结剂组(38.95±20.07MPa)(P<.05)。

结论

对于后续复合材料的粘结,Er,Cr:YSGG激光动力流体动力学系统比37%磷酸更有效地蚀刻釉质表面。

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