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双固化水门汀和流动性树脂黏结剂黏结强化瓷与釉质的努氏硬度和有效性。

Knoop hardness and effectiveness of dual-cured luting systems and flowable resin to bond leucite-reinforced ceramic to enamel.

机构信息

Department of Restorative Dentistry, Piracicaba Dental School - State University of Campinas, Piracicaba, Brazil.

出版信息

J Prosthodont. 2013 Jan;22(1):54-8. doi: 10.1111/j.1532-849X.2012.00898.x. Epub 2012 Aug 31.

Abstract

PURPOSE

The aim of this study was to evaluate the Knoop microhardness and microshear bond strength (MSBS) of dual-cured luting systems and flowable resin bonded to leucite-reinforced ceramics and enamel.

MATERIALS AND METHODS

Eighty bovine incisors were randomly divided into four groups per test (microhardness and microshear; n = 10) according to the bonding procedure: Excite DSC/Variolink, Clearfil SE Bond/Panavia F, Adper Scotchbond Multi-Purpose Plus/RelyX ARC, and Adper Single Bond 2/Filtek Z350 Flow. For the KHN measurement, the cement was applied on the enamel surface and light-cured through a ceramic disk (5 mm diameter × 1.2 mm thick). Five indentations were performed in each specimen and measured at HMV-2. For the microshear test, two cylinders of a leucite-reinforced ceramic (1 mm diameter × 2 mm height) were bonded to the enamel substrate in accordance with the bonding procedures previously established. One cylinder was tested 24 hours after cementation, and the other was subjected to thermocycling (2000 cycles) and then submitted to an MSBS test. The data from the hardness and bond strength tests were subjected to one- and two-way repeated-measures analysis of variance (ANOVA), respectively, and to Tukey's test (α= 0.05).

RESULTS

Scotchbond/RelyX ARC presented higher values of bond strength, while Single Bond/Z350 Flow showed lower values. The thermocycling promoted a reduction in the bond strength values for all groups. Panavia F presented higher values of KHN, and the flowable resin presented the lowest. RelyX ARC and Variolink presented intermediate values on hardness evaluation.

CONCLUSIONS

For ceramic cementation, dual-cured resin luting systems promoted more reliable bonding and microhardness values than the flowable resin.

摘要

目的

本研究旨在评估双重固化粘固系统和流动性树脂与锂辉石增强陶瓷和牙釉质的微剪切结合强度(MSBS)的科努普显微硬度。

材料与方法

根据粘结程序,将 80 颗牛切牙随机分为 4 组进行测试(显微硬度和微剪切;n = 10):Excite DSC/Variolink、Clearfil SE Bond/Panavia F、Adper Scotchbond Multi-Purpose Plus/RelyX ARC 和 Adper Single Bond 2/Filtek Z350 Flow。对于 KHN 测量,将粘结剂施加在牙釉质表面上,并通过陶瓷盘(5 毫米直径×1.2 毫米厚)进行光固化。在每个标本上进行 5 次压痕测量,并在 HMV-2 上进行测量。对于微剪切测试,根据先前建立的粘结程序,将两个直径为 1 毫米、高度为 2 毫米的锂辉石增强陶瓷圆柱体粘结到牙釉质基底上。一个圆柱体在粘结后 24 小时进行测试,另一个圆柱体进行热循环(2000 次循环),然后进行 MSBS 测试。硬度和粘结强度测试的数据分别进行单向和双向重复测量方差分析(ANOVA),并进行 Tukey 检验(α=0.05)。

结果

Scotchbond/RelyX ARC 表现出较高的粘结强度值,而 Single Bond/Z350 Flow 则表现出较低的粘结强度值。热循环使所有组的粘结强度值降低。Panavia F 表现出较高的 KHN 值,而流动性树脂则表现出较低的值。RelyX ARC 和 Variolink 在硬度评估中表现出中间值。

结论

对于陶瓷粘结,双重固化树脂粘固系统比流动性树脂提供更可靠的粘结和显微硬度值。

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