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In vitro evaluation of marginal and internal adaptation after occlusal stressing of indirect class II composite restorations with different resinous bases

机译:咬合应力对具有不同树脂基底的II类间接复合修复物的咬合应力后的边缘和内部适应性的体外评估

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摘要

Composite inlays are indicated for large cavities, which frequently extend cervically into dentin. The purpose of this study was to compare in vitro the marginal and internal adaptation of class II fine hybrid composite inlays (Herculite, Kerr) made with or without composite bases, having different physical properties. Freshly extracted human molars were used for this study. The base extended up to the cervical margins on both sides and was made from Revolution (Kerr), Tetric flow (Vivadent), Dyract (Detrey-Dentsply) or Prodigy (Kerr), respectively. Before, during and after mechanical loading (1 million cycles, with a force varying from 50 to 100 N), the proximal margins of the inlay were assessed by scanning electron microscopy. Experimental data were analysed using non-parametric tests. The final percentages of marginal tooth fracture varied from 30.7% (no base) to 37.6% (Dyract). In dentin, percentages of marginal opening varied from 9.2% (Tetric Flow) to 30.1% (Prodigy), however, without significant difference between base products. Mean values of opened internal interface with dentin varied from 11.06% (Tetric Flow) to 28.15% (Prodigy). The present results regarding dentin adaptation confirmed that the physical properties of a base can influence composite inlay adaptation and that the medium-rigid flowable composite Tetric Flow is a potential material to displace, in a coronal position, proximal margins underneath composite inlays.
机译:复合嵌体适用于大腔,通常在宫颈延伸到牙本质。这项研究的目的是在体外比较使用或不使用复合基材制成的具有不同物理性能的II类精细混合复合嵌体(Herculite,Kerr)的边缘和内部适应性。新鲜提取的人类臼齿用于这项研究。底座延伸至两侧的颈缘,分别由Revolution(Kerr),Tetric flow(Vivadent),Dyract(Detrey-Dentsply)或Prodigy(Kerr)制成。在机械加载之前,之中和之后(一百万次循环,力在50到100 N之间变化),通过扫描电子显微镜评估嵌体的近端边缘。使用非参数测试分析实验数据。边缘性牙齿骨折的最终百分比从30.7%(无底)到37.6%(Dyract)不等。在牙本质中,边缘开口的百分比从9.2%(Tetric Flow)到30.1%(Prodigy)不等,但基础产品之间没有显着差异。牙本质开放的内部界面的平均值从11.06%(Tetric Flow)到28.15%(Prodigy)不等。关于牙本质适应性的当前结果证实,基底的物理性质可以影响复合嵌体的适应性,并且中等刚性的可流动复合Tetric Flow是一种潜在的材料,可以在冠状位置置换复合嵌体下方的近缘。

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