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表面处理是否会影响各种纤维桩系统与树脂核材料的粘结强度?

Does the surface treatment affect the bond strength of various fibre-post systems to resin-core materials?

机构信息

School of Dental Technology, Hacettepe University, Ankara, Turkiye.

出版信息

J Dent. 2011 Feb;39(2):171-9. doi: 10.1016/j.jdent.2010.11.008. Epub 2010 Nov 27.

Abstract

OBJECTIVES

The aim of this study was to evaluate the effects of surface treatments on bond strength of resin-core materials to three different types of fibre posts.

METHODS

Prefabricated glass (FRC Postec, Ivoclar), quartz (DT light, Bisco) and individually formed glass (Everstick, Stick Tech) fibre posts with a coronal diameter of 1.5 mm were randomly divided into three groups according to the surface treatment performed. In Group 1 sandblasting with aluminium oxide particles (Rocatec Pre, 3M Espe) was followed by the application of a silane coupling agent. In Group 2, posts were immersed in 9.6% hydrofluoric acid gel for 60 s and silanized for 60 s. In Group 3, no surface treatment was performed and it served as control. The resin-core material (Biscore, Bisco) or resin composites (Admira, Voco) were applied to the tube in 2-mm thick increments and light-cured for 40 s using a halogen light curing unit. 1 mm thick discs (n=10/per group) were prepared for the micropush-out test. The discs were pushed out in a universal testing machine (Lloyd Instruments). Statistical significance was determined by a multifactorial analysis of variance followed by Tukey's post hoc test or independent t tests.

RESULTS

ANOVA revealed that fibre posts and core materials had a significant effect on micropush-out bond strength values (p<0.001). The surface treatment with hydrofluric acid gel and sandblasting with aluminium oxide particles significantly enhanced bond strength values of fibre posts except Everstick post (p<0.05).

CONCLUSION

Different surface treatments of fibre posts might affect the bonding capacity of resin-core systems to these posts.

摘要

目的

本研究旨在评估不同表面处理方法对三种不同类型纤维桩与树脂核材料粘结强度的影响。

方法

将直径 1.5mm 的预制玻璃(FRC Postec,Ivoclar)、石英(DT light,Bisco)和个体化成型玻璃纤维桩(Everstick,StickTech)随机分为三组,根据所进行的表面处理方法进行分组。在第 1 组中,用氧化铝颗粒(Rocatec Pre,3M Espe)喷砂处理后,再应用硅烷偶联剂。在第 2 组中,将纤维桩浸泡在 9.6%的氢氟酸凝胶中 60s,然后硅烷化 60s。第 3 组不进行表面处理,作为对照组。将树脂核材料(Biscore,Bisco)或树脂复合材料(Admira,Voco)以 2mm 厚的增量施加到管中,用卤素光固化器光固化 40s。制备 1mm 厚的圆盘(每组 n=10)用于微推出测试。将圆盘在万能试验机(Lloyd Instruments)中推出。通过多因素方差分析和 Tukey 事后检验或独立 t 检验确定统计学意义。

结果

方差分析显示,纤维桩和核材料对微推出粘结强度值有显著影响(p<0.001)。用氢氟酸凝胶进行表面处理和用氧化铝颗粒喷砂处理除 Everstick 纤维桩外,均显著提高了纤维桩的粘结强度值(p<0.05)。

结论

不同的纤维桩表面处理方法可能会影响树脂核系统与这些纤维桩的粘结能力。

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