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Flowable materials as an intermediate layer could improve the marginal and internal adaptation of composite restorations in Class-V-cavities

机译:可流动的材料作为中间层可以改善V型腔中复合修复体的边缘和内部适应性

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Objectives. The purpose of this in vitro study was to evaluate the marginal and internal adaptation of restorative systems in combination with flowable materials as an intermediate layer in Class-V-cavities. Methods. Thirty Class-V-cavities with occlusal margins in enamel and gingival margins in dentin/cementum were prepared and randomly assigned to five groups. The following five restorative systems were used: compomer, composite E, flowable compomer/composite E, composite RF and flowable composite/composite RF. The flowable materials were added between the restorative composites and the cervical margins of the cavities. Marginal and internal adaptation were quantitatively evaluated before and after thermal (2500 times between 5 and 55 ℃) and mechanical load cycling (25,000 times 100 N) using standard SEM procedures. Statistical analysis was performed using the Kruskal-Wallis and Mann-Whitney U-Test. The morphology of the internal restorative interfaces was also evaluated. Results. The present study revealed that the best marginal adaptation in dentin was attained with the compomer restoration (95.8% perfect margin). The marginal adaptation of composite restorative systems was improved by the use of a flowable compomer (45.5% vs. 68.2% perfect margin in dentin) or a flowable composite (46. 7% vs. 80.7% perfect margin in dentin, p < 0.05) as an intermediate layer. No differences were observed between the used materials for the parameter internal adaptation. Significance. In Class-V-cavities compomers showed the best marginal adaptation and the marginal adaptation of composite fillings could be improved by the use of flowable materials as an intermediate layer.
机译:目标。这项体外研究的目的是评估恢复系统的边缘和内部适应性,并结合可流动的材料作为V型腔的中间层。方法。准备了30个V型腔,其中牙釉质的咬合边缘和牙本质/水泥的牙龈边缘,并随机分为5组。使用了以下五个修复系统:复合物,复合物E,可流动的复合物/复合物E,复合物RF和可流动的复合物/复合物RF。将可流动的材料添加到修复性复合材料和腔的宫颈边缘之间。使用标准的SEM程序,对热(5至55℃之间的2500倍)和机械负载循环(25,000 x 100 N)之前和之后的边缘和内部适应进行定量评估。使用Kruskal-Wallis和Mann-Whitney U检验进行统计分析。内部恢复界面的形态也进行了评估。结果。本研究表明,通过复合体修复可达到牙本质最佳的边缘适应性(95.8%完美边缘)。复合修复系统的边缘适应性通过使用可流动的复合体(牙本质完美边缘的45.5%vs. 68.2%)或可流动的复合材料(牙本质完美边缘的46. 7%vs. 80.7%,p <0.05)得到了改善。作为中间层。在用于参数内部适配的所用材料之间未观察到差异。意义。在V型腔中,复合材料显示出最佳的边缘适应性,而复合填充物的边缘适应性可以通过使用可流动材料作为中间层来改善。

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