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The effect of short fiber composite base on microleakage and load-bearing capacity of posterior restorations

机译:短纤维复合材料基对后牙修复体微渗漏和承载力的影响

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摘要

Objectives: To determine the marginal microleakage of Class II restorations made with different composite base materials and the static load-bearing capacity of direct composite onlay restorations. Methods: Class II cavities were prepared in 40 extracted molars. They were divided into five groups (n = 8/group) depending on composite base material used (everX Posterior, SDR, Tetric EvoFlow). After Class II restorations were completed, specimens were sectioned mid-sagitally. For each group, sectioned restorations were immersed in dye. Specimens were viewed under a stereo-microscope and the percentage of cavity leakage was calculated. Ten groups of onlay restorations were fabricated (n = 8/group); groups were made with composite base materials (everX Posterior, SDR, Tetric EvoFlow, Gradia Direct LoFlo) and covered by 1 mm layer of conventional (Tetric N-Ceram) or bulk fill (Tetric EvoCeram Bulk Fill) composites. Groups made only from conventional, bulk fill and short fiber composites were used as control. Specimens were statically loaded until fracture. Data were analyzed using ANOVA (p = 0.05). Results: Microleakage of restorations made of plain conventional composite or short fiber composite base material showed statistically (p < 0.05) lower values compared to other groups. ANOVA revealed that onlay restorations made from short fiber-reinforced composite (FRC) as base or plain restoration had statistically significant higher load-bearing capacity (1593 N) (p < 0.05) than other restorations. Conclusion: Restorations combining base of short FRC and surface layer of conventional composite displayed promising performance related to microleakage and load-bearing capacity.
机译:目的:确定使用不同复合基材制造的II类修复体的边缘微渗漏以及直接复合覆盖修复体的静态承载能力。方法:在40颗磨牙中准备II类腔体。根据所使用的复合基材(everX Posterior,SDR,Tetric EvoFlow)将它们分为五组(n = 8 /组)。 II类修复体完成后,将标本在矢状中切开。对于每组,将分段的修复体浸入染料中。在立体显微镜下观察标本,并计算腔漏的百分比。制作了十组镶嵌修复体(n = 8 /组);各组均由复合基础材料(everX Posterior,SDR,Tetric EvoFlow,Gradia Direct LoFlo)制成,并被1毫米厚的常规(Tetric N-Ceram)或散装填充(Tetric EvoCeram散装填充)复合材料覆盖。仅由常规的,散装的和短纤维复合材料制成的组用作对照。样品被静态加载直到断裂。使用ANOVA分析数据(p = 0.05)。结果:与其他组相比,由普通的常规复合材料或短纤维复合材料制成的修复体的微渗漏显示出统计学上较低的值(p <0.05)。方差分析显示,由短纤维增强复合材料(FRC)制成的基础或普通修复体的覆盖修复体在统计学上比其他修复体具有更高的承载力(1593 N)(p <0.05)。结论:将短FRC基底与常规复合材料表面层结合起来的修复表现出与微渗漏和承重能力有关的有希望的性能。

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