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Effect of monomer treatment and polymerisation methods on the bond strength of resin teeth to denture base material.

机译:单体处理和聚合方法对树脂牙与义齿基料粘结强度的影响。

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BACKGROUND: The fracture between acrylic denture base material and artificial teeth is a common clinical occurrence in dental prosthodontic practice. OBJECTIVE: To evaluate the bond strength between acrylic resins and resin denture teeth when submitted by two protocols of monomer liquid application on the tooth surface and using different polymerisation methods. MATERIAL AND METHODS: Microwave-polymerised (Onda-Cryl), heat-polymerised (Classico) and autopolymerising (Jet) acrylic resins and a brand of resin denture teeth (Biotone) were used. The acrylic resins were polymerised according to the cycles: (A) microwave--fast cycle, Onda-Cryl; (B) microwave--long cycle, Onda-Cryl; (C) microwave--manufacturer's cycle, Onda-Cryl; (T) water bath--long cycle, Classico and (Q) bench polymerisation cycle, Jet. Thirty specimens were prepared for each polymerisation method; 10 were packed with acrylic resin after 60 s of monomer liquid application on the tooth surface, 10 after 180 s and 10 without any monomer liquid application. For the purpose of the study, a shear test was used. anova and Tukey tests were performed to identify significant differences (alpha = 0.05). RESULTS: The highest bond strength values were found for monomer surface treatments, regardless of the polymerisation cycles. The highest significant values were found for cycles B (15.4 +/- 1.8 MPa), C (11.9 +/- 4.9 MPa) and T (15.4 +/- 2.6 MPa) for non-treated and 60 s methylmethacrylate treated groups. Comparing the monomer liquid treatment, they did not differ significantly (p > 0.05), except for cycle A (p < 0.05). CONCLUSION: Chemical treatment using monomer on the tooth surface prior to the acrylic resin packing improved the bond strength between resin denture tooth and acrylic resin, regardless of monomer liquid treatment protocols. The microwavable resin, polymerised by fast cycle and autopolymerising resin should be avoided for processing denture and denture repairs, respectively.
机译:背景:丙烯酸义齿基托材料与人造牙之间的骨折是口腔修复术中的常见临床现象。目的:评估丙烯酸树脂与树脂义齿之间的粘结强度,该粘结强度是通过两种在液体表面上使用单体液体的方案并采用不同的聚合方法提出的。材料与方法:使用了微波聚合(Onda-Cryl),热聚合(Classico)和自聚合(Jet)丙烯酸树脂和一系列树脂假牙(Biotone)。丙烯酸树脂根据以下循环进行聚合:(A)微波-快速循环,Onda-Cryl; (B)微波-长周期昂达·克赖尔; (C)微波-制造商的循环,昂达·克里(Onda-Cryl); (T)水浴-长周期,Classico和(Q)台式聚合周期,Jet。每种聚合方法都准备了30个样品。在牙齿表面施涂60 s单体后,用丙烯酸树脂填充10个,在180 s后施涂10个,在不施加任何单体液体的情况下填充10个。为了研究的目的,使用了剪切试验。进行了方差分析和Tukey测试以发现显着差异(alpha = 0.05)。结果:无论聚合周期如何,单体表面处理的结合强度值最高。对于未处理的和60 s甲基丙烯酸甲酯处理的组,发现周期B(15.4 +/- 1.8 MPa),C(11.9 +/- 4.9 MPa)和T(15.4 +/- 2.6 MPa)的最高显着值。与单体液体处理相比,除循环A(p <0.05)外,它们没有显着差异(p> 0.05)。结论:在丙烯酸树脂填充之前,在牙齿表面使用单体进行化学处理可提高树脂假牙与丙烯酸树脂之间的粘结强度,而无需考虑单体液体处理方案。应避免分别通过义齿和义齿修复的可微波固化树脂和快速聚合树脂。

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