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Marginal adaptation and internal indentation resistance of a Class II bulk-fill resin-based composite

机译:II类批量填充树脂复合材料的边缘适应和内部压痕电阻

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Purpose: To compare the dentin bonded external marginal integrity and the internal surface indentation hardness of bulk-fill and conventional resin-based composite (RBC) placed in both bulk and increments. Methods: 120 MO and DO cavities were prepared in 60 extracted human third molars. The teeth were randomly divided into four groups of 15 teeth per group to be restored as follows: BB (bulk-fill RBC, placed in a 4 mm bulk increment), BL (bulk-fill RBC, placed in 2 mm incremental layers), CB (conventional RBC, placed in a 4 mm bulk increment), and CL (conventional RBC, placed in 2 mm incremental layers). Marginal gaps were measured at mesial and distal dentin gingival cavosurfaces of each tooth using scanning electron microscopy of epoxy resin replicas and Knoop hardness (KHN) was measured at three different RBC depths (1.8, 2.8 and 3.8 mm). Statistical analyses included one-way ANOVA with post-hoc Tukey's HSD, and paired-sample t-test or a nonparametric Wilcoxon signed-rank test, as appropriate. Results: There was no significant effect of RBC restoration type on external marginal gap at the distal surface or at the mesial surface among the four groups tested (P > 0.05 in each instance), while no significant difference in external marginal gap was found between the mesial and distal surfaces within groups (P > 0.05 in each instance). The mean RBC internal surface KHN at 1.8 mm depth was significantly greater than at 2.8 mm and 3.8 mm depths in all tested groups (P< 0.05 for all instances), with a similar mean internal hardness between all groups. The bulk-fill RBC restorations demonstrated similar marginal gap formation and Knoop hardness to conventional universal RBC restorations under the conditions of this study.
机译:目的:比较牙本质键合外边缘完整性和散装填充的内表面压痕硬度和常规的基于树脂的复合物(RBC),占散装和增量。方法:在60例提取的人的第三磨牙中制备120mO和DO腔。牙齿随机分为每组4组15颗牙齿,如下恢复:BB(批量填充RBC,置于4mm批量增量),BL(批量填充RBC,放置在2 mm增量层), Cb(常规RBC,置于4mm批量增量)和CL(常规RBC,置于2mm增量层)。使用扫描电子显微镜在三种不同的RBC深度(1.8,2.8和3.8mm)下测量使用环氧树脂复制品的扫描电子显微镜(1.8,2.8和3.8mm)测量每个牙齿的间隙间隙和远端牙本质牙龈胶囊。统计分析包括具有后HOC Tukey的HSD的单向ANOVA,以及适当的配对样本T检验或非参数狼克朗签名测试。结果:RBC恢复类型对远端表面的外部边缘间隙或在测试中的四组的外部边缘间隙中没有显着影响(每种情况下P> 0.05),而在此期间没有发现外部边缘间隙的显着差异组内的间隙和远端表面(每个实例中的p> 0.05)。在1.8mm深度下的平均RBC内表面Khn明显大于所有测试基团的2.8 mm和3.8mm深度(所有实例的P <0.05),在所有组之间具有类似的平均内部硬度。在本研究的条件下,体积填充RBC修复体显示出与常规通用RBC修复物相似的边缘间隙形成和Knoop硬度。

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