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首页> 外文期刊>Journal of Indian Society of Pedodontics and Preventive Dentistry >Analysis of microleakage of temporary restorative materials in primary teeth
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Analysis of microleakage of temporary restorative materials in primary teeth

机译:乳牙临时修复材料的微渗漏分析

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Aim: The aim of this study was to compare the coronal microleakage of restorative materials used between sessions of endodontic treatment in primary teeth. Materials and Methods: Forty healthy primary canines were chosen and randomly allocated to four groups: Group 1 - Cimpat Branco ® (n = 10), Group 2 - Bioplic ® (n = 10), Group 3 - Maxxion R ® glass ionomer cement (n = 10), and Group 4 (control) - Z350 ® composite resin (n = 10). Class V cavities were created and fillings carried out following the manufacturer's instructions. The teeth were submitted to thermocycling, sealed, and immersed in 0.5% basic fuchsin solution for 24 h. The teeth were split along their long axis in the vestibulolingual direction and the tooth-restorative material interface was photographed. The percentage of microleakage was calculated using the ImageJ program. Data were analyzed using the analysis of variance (ANOVA) F-test and Bonferroni's t-test, with a 5% level of significance. Results: The following mean percentages of microleakage were found: Group 1 = 16.08%, Group 2 = 46.98%, Group 3 = 47.93%, and Group 4 = 11.03%. Statistically, significant differences were found in the comparison of Groups 1 and 4 to Groups 2 and 3. Conclusion: Cimpat Branco ® had a lower percentage of microleakage in comparison to Bioplic ® and Maxxion R ® glass ionomer cement.
机译:目的:本研究的目的是比较在乳牙牙髓治疗之间使用的修复材料的冠状微渗漏。材料和方法:选择四十个健康的原犬并随机分为四组:第1组-Cimpat Branco ®(n = 10),第2组-Bioplic ®(n = 10),第3组-Maxxion R ®玻璃离聚物水泥(n = 10)和第4组(对照)-Z350 ®复合树脂(n = 10)。按照制造商的说明创建V类腔,并进行填充。将牙齿进行热循环,密封并浸入0.5%碱性品红溶液中24小时。牙齿沿前庭方向沿其长轴劈开,并拍摄了牙齿修复材料界面。使用ImageJ程序计算微渗漏的百分比。使用方差分析(ANOVA)F检验和Bonferroni t检验对数据进行分析,显着性水平为5%。结果:发现以下平均微渗漏百分比:组1 = 16.08%,组2 = 46.98%,组3 = 47.93%,组4 = 11.03%。从统计学上看,第1组和第4组与第2组和第3组的比较存在显着差异。结论:与Bioplic ®相比,Cimpat Branco ®的微渗漏百分比更低和Maxxion R ®玻璃离聚物水泥。

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