首页> 外文期刊>Acta odontologica Scandinavica. >Thermo-mechanical degradation of composite restoration photoactivated by modulated methods-a SEM study of marginal and internal gap formation
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Thermo-mechanical degradation of composite restoration photoactivated by modulated methods-a SEM study of marginal and internal gap formation

机译:调制方法光活化复合修复体的热机械降解-边缘和内部间隙形成的SEM研究

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摘要

Objective. To evaluate the influence of thermal-mechanical degradation on superficial and internal gap formation of composite restorations photoactivated using modulated methods. Materials and methods. An experimental composite was prepared using a resin matrix containing 65wt% Bis-GMA and 35wt% TEGDMA. Camphorquinone (0.5wt%) and dimethylaminoethyl-methacrylate (0.5wt%) were dissolved in the resin as a photo-initiator system and 65wt.% silanized glass fillers were added to the matrix. Ground buccal surfaces of bovine lower incisors were used to make 160 preparations (3 mm × 3 mm × 2 mm in depth). An adhesive system (Adper Single Bond 2) was applied and the specimens were assigned into 16 groups (n = 10), according to the photoactivation method [high intensity (HI), low intensity (LI), soft-start (SS) and pulse-delay (PD)] and the degradation protocol [(controlo degradation; thermal cycling (TC); mechanical loading (ML); thermo-mechanical loading (TC+ML)]. Marginal and internal interfaces of bonded restorations were replicated in epoxy resin and analyzed by SEM. Gaps were expressed as a percentage of the total length of the margins. Data were submitted to 2-way ANOVA and Tukey's test (α = 0.05). Results. For the control group no significance was noted among the photoactivation methods. TC had no effect in gap formation. ML and TC+ML increased the incidence of superficial gaps for both HI and SS groups as well as increased the internal gaps for all groups. Conclusion. Although photoactivation methods do not influence gap formation at first, composite restoration photoactivated by low intensity or modulated methods showed improved resistance to thermo-mechanical degradation. Mechanical loading is determinant for interfacial degradation of composite restorations, while thermal cycling has no effect on gap formation.
机译:目的。评估热机械降解对光调制复合材料修复体表面和内部间隙形成的影响。材料和方法。使用包含65wt%的Bis-GMA和35wt%的TEGDMA的树脂基质制备实验复合物。将樟脑醌(0.5wt%)和甲基丙烯酸二甲基氨基乙基酯(0.5wt%)作为光引发剂体系溶解在树脂中,并将65wt。%的硅烷化玻璃填料加入到基质中。牛下门齿的颊颊面被用来制作160种制剂(深度3 mm×3 mm×2 mm)。根据光活化方法[高强度(HI),低强度(LI),软启动(SS)和光活化],应用粘合剂系统(Adper Single Bond 2),将样品分为16组(n = 10)。脉冲延迟(PD)]和降解方案[(控制/无降解;热循环(TC);机械载荷(ML);热机械载荷(TC + ML)]。复制了粘结修复体的边缘和内部界面在环氧树脂中并通过SEM进行分析,间隙表示为页边距总长度的百分比,将数据提交至2-way ANOVA和Tukey检验(α= 0.05)。结论:尽管光活化方法不影响间隙的形成,但TC和ML + TC + ML增加了HI和SS组表面间隙的发生率,并且增加了所有组的内部间隙。首先,复合修复物被光活化通过低强度或调制方法显示出改进的抗热机械降解性。机械载荷是复合修复体界面降解的决定因素,而热循环对缝隙的形成没有影响。

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