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首页> 外文期刊>Gerodontology >Effect of thermal cycling on microleakage between hard chairside relines and denture base acrylic resins.
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Effect of thermal cycling on microleakage between hard chairside relines and denture base acrylic resins.

机译:热循环对硬质椅边衬里和义齿基丙烯酸树脂之间微渗漏的影响。

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OBJECTIVES: Microleakage is a pre-stage of debonding between hard chairside relines and denture base acrylic resins. Therefore, it is important to assess them with regard to the longevity of the relined denture. This study investigated the effect of thermal cycling on the microleakage at the interface of three hard chairside reline resins and three denture base resins. MATERIAL AND METHODS: Rectangular bars (12 mm x 3 mm x 3 mm) of Lucitone 550, Acron MC and QC 20 were made and relined with Kooliner, Tokuyama Rebase Fast II and Ufi Gel Hard, Lucitone 550, Acron MC and QC 20 resins. Specimens were divided into one control and two test groups (n=10). In specimens of the control group, the microleakage was performed after the reline procedure. In Test Group 1, the specimens were stored for 24 h in distilled water at room temperature and in Test Group 2; the specimens were thermal cycled from 5 to 55 degrees C for 5000 cycles with a 30-s dwell time. Subsequently, all specimens were immersed in 50% silver nitrate solutions for 24h. All specimens were sectioned longitudinally into three fractions and the lateral sections were examined (n=20). Silver nitrate stain penetration was examined under a stereoscopic lens with x30 magnification, and the images were captured. Leica Qwin image analysis software was used to determine microleakage at the interface of the materials. Data were analysed using the Kruskal-Wallis test at a 95% level of significance. RESULTS: For all cycles, there were no statistically significant differences between thermal cycled and non-thermal cycled groups (p>0.05). CONCLUSION: It can be concluded that thermal cycling had no effect on the microleakage.
机译:目的:微渗漏是在硬椅边衬里和义齿基体丙烯酸树脂之间进行脱胶的前阶段。因此,重要的是要对义齿的使用寿命进行评估。这项研究调查了热循环对三种硬质椅旁树脂和三种义齿基料树脂界面微渗漏的影响。材料和方法:制作Lucitone 550,Acron MC和QC 20的矩形棒(12 mm x 3 mm x 3 mm),并用Kooliner,Tokuyama Rebase Fast II和Ufi Gel Hard,Lucitone 550,Acron MC和QC 20树脂进行内衬。 。标本分为一个对照组和两个测试组(n = 10)。在对照组的标本中,在重新排列程序后进行微渗漏。在测试组1中,将样品在室温下的蒸馏水中保存24小时,然后在测试组2中保存;将样品从5到55摄氏度热循环5000个循环,停留时间为30秒。随后,将所有样品浸入50%硝酸银溶液中24h。将所有标本纵向切成三部分,并检查侧向切面(n = 20)。在具有30倍放大率的立体镜下检查硝酸银污渍的渗透,并捕获图像。使用Leica Qwin图像分析软件确定材料界面的微渗漏。使用Kruskal-Wallis检验以95%的显着性水平分析数据。结果:在所有循环中,热循环组和非热循环组之间均无统计学差异(p> 0.05)。结论:可以得出结论,热循环对微渗漏没有影响。

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