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Effect of pre-heated composites and flowable liners on Class II gingival margin gap formation.

机译:预热的复合材料和可流动衬垫对II类龈缘缝隙形成的影响。

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PURPOSE: To evaluate the effect of preheated composites (PHC) and flowable liners (FL) on the gingival margin gap formation of Class II composite restorations compared to the placement of room temperature composites (RTC). MATERIALS AND METHODS: Class II composite restorations were prepared on 40 extracted mandibular third molars, with the gingival margin located 1 mm below the CEJ in dentin. Optibond FL (Kerr), microhybrid Filtek Z-250 (3M ESPE) and Flow-It (Jeneric Pentron) were used to evaluate five study groups: 1) PHC, 130 degrees F/54.4 degrees C; 2) PHC, 155 degrees F/68.3 degrees C; 3) FL cured prior to the first increment composite; 4) FL cured simultaneously with the first increment composite and 5) RTC (Control). Impressions were taken with quick set polyvinyl siloxane impression material, and epoxy resin replicas were evaluated under SEM (200x). Gingival margin adaptation was quantitatively evaluated in terms of percentage of gap formation according to a modified ordinal scoring criteria. All margins were evaluated twice for reliability assessment. A non-parametric Kruskal-Wallis test was used to determine whether significant differences in gap formation existed among the study groups. RESULTS: A high level of agreement was observed between duplicate measurements of the percentage of gap formation (intra-class correlation = 0.956, p < 0.0001). There was no evidence of a difference among groups defined by placement technique (p = 0.82). Overall, the mean gap-percentage for the 40 margins evaluated was 6.3 (Median = 1.1; SD = 14.8). CONCLUSIONS: Gingival margin adaptation was not improved relative to the control by any of the placement techniques tested. No significant differences in gap formation were found among the study groups. A high degree of intra-examiner reliability was confirmed.
机译:目的:与室温复合物(RTC)放置相比,评估预热复合物(PHC)和可流动衬里(FL)对II类复合物修复物龈缘间隙形成的影响。材料与方法:在40颗下颌第三磨牙上制备II类复合修复物,其牙龈边缘位于牙本质中CEJ下方1毫米处。 Optibond FL(Kerr),微混合Filtek Z-250(3M ESPE)和Flow-It(Jeneric Pentron)用于评估五个研究组:1)PHC,130华氏度/54.4摄氏度; 2)PHC,155°F / 68.3°C; 3)在第一次增量复合材料之前固化FL; 4)FL与第一增量复合材料同时固化; 5)RTC(对照)。使用快速固化的聚乙烯基硅氧烷印模材料进行印模,并在SEM(200x)下评估环氧树脂复制品。根据修改的序数评分标准,根据间隙形成的百分比定量评估牙龈边缘适应性。所有边距均经过两次评估,以进行可靠性评估。使用非参数Kruskal-Wallis检验确定研究组之间是否存在缺口形成的显着差异。结果:在重复测量间隙形成百分比之间观察到高度一致性(组内相关性= 0.956,p <0.0001)。没有证据表明通过放置技术定义的组之间存在差异(p = 0.82)。总体而言,评估的40个边距的平均差距百分比为6.3(中位数= 1.1; SD = 14.8)。结论:通过测试的任何放置技术,牙龈边缘适应性均没有相对于对照改善。在研究组之间,缺口形成没有显着差异。确认了高度的审查员内部可靠性。

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