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采用不同粘接策略时可流动复合树脂与乳牙牙本质的微拉伸粘接强度及失败模式

Microtensile Bond Strength and Failure Modes of Flowable Composites on Primary Dentin with Application of Different Adhesive Strategies.

作者信息

Durmuşlar Simge, Ölmez Ayşegül

机构信息

Department of Pediatric Dentistry, Faculty of Dentistry, Bülent Ecevit University, Zonguldak, Turkey.

Department of Pediatric Dentistry, Faculty of Dentistry, Gazi University, Ankara, Turkey.

出版信息

Contemp Clin Dent. 2017 Jul-Sep;8(3):373-379. doi: 10.4103/ccd.ccd_310_17.

Abstract

BACKGROUND

Resin composite is an option for the restoration of primary teeth, and new materials with simplified procedures are increasingly being suggested.

AIMS

This study aims to evaluate the microtensile bond strengths and fracture modes of flowable composites on primary dentin with application of different adhesive strategies.

MATERIALS AND METHODS

Sixty extracted noncaries primary molars were abraded from buccal surfaces to expose dentin surface. The teeth were randomly divided into three groups as follows: Group 1, Vertise™ Flow (Kerr) (self-adhering flowable composite); Group 2, G-aenial Universal Flo (GC Europe) (used with one-step self-etch system); Group 3, Tetric N-Flow (Ivoclar/Vivadent) (used with two-step total etch system). Then, the flowable composites were applied to buccal dentin surfaces with the help of guide mold. Samples were embedded in acrylic blocks and sectioned to form dentin-composite sticks with a surface area of approximately 1 mm. Finally, a total of 180 sticks were obtained to give each group of 60 sticks. Microtensile bond strengths were measured using a universal testing machine (1 mm/min). Fracture modes were evaluated with scanning electron microscopy.

STATISTICAL ANALYSIS

Microtensile bond strengths data were analyzed by Kruskal-Wallis nonparametric test.

RESULTS

The microtensile bond strengths of G-aenial (15.5 megapascals [Mpa]) and Tetric (13.0 MPa) were statistically significant higher than Vertise (2.3 MPa). It was recorded that most of fractures in G-aenial was 40% cohesive, Tetric was 53.3% mixed, and Vertise was 83.3% adhesive.

CONCLUSIONS

The self-adhering flowable composite Vertise™ Flow had the lowest and G-aenial Universal Flo had the highest microtensile bond values.

摘要

背景

树脂复合材料是乳牙修复的一种选择,并且越来越多地有人提出采用简化程序的新材料。

目的

本研究旨在评估采用不同粘结策略时,可流动复合材料与乳牙牙本质之间的微拉伸粘结强度及断裂模式。

材料与方法

60颗拔除的非龋性乳牙磨牙从颊面进行研磨以暴露牙本质表面。将牙齿随机分为以下三组:第1组,Vertise™ Flow(登士柏)(自粘结可流动复合材料);第2组,G-aenial Universal Flo(GC欧洲公司)(与一步自酸蚀系统一起使用);第3组,Tetric N-Flow(义获嘉伟瓦登特)(与两步全酸蚀系统一起使用)。然后,借助导向模具将可流动复合材料应用于颊面牙本质表面。样本嵌入丙烯酸树脂块中并切片以形成表面积约为1平方毫米的牙本质-复合材料棒。最后,共获得180根棒,每组60根。使用万能材料试验机(1毫米/分钟)测量微拉伸粘结强度。通过扫描电子显微镜评估断裂模式。

统计分析

微拉伸粘结强度数据采用Kruskal-Wallis非参数检验进行分析。

结果

G-aenial组(15.5兆帕斯卡[Mpa])和Tetric组(13.0 MPa)的微拉伸粘结强度在统计学上显著高于Vertise组(2.3 MPa)。记录显示,G-aenial组中大多数断裂为40%粘结性断裂,Tetric组为53.3%混合性断裂,Vertise组为83.3%粘结性断裂。

结论

自粘结可流动复合材料Vertise™ Flow的微拉伸粘结值最低,而G-aenial Universal Flo的微拉伸粘结值最高。

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