Influence of the Type of Bulk-Fill, Resin-Based Composite on Internal Adaptation in Class V Restorations.

Qianqian Gao, Tao Huang, Anna Wang, Qiong Sun, Fuhua Zhang, Lei Zhang
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Abstract

Objective: To investigate the effects of bulk-fill, resin-based composite types (high or low viscosity) on the internal adaptation of Class V restorations.

Study design: Experimental study. Place and Duration of the Study: Hefei Stomatological Hospital, Hefei, China, from October 2022 to December 2023.

Methodology: A total of 140 extracted human premolars were collected. Class V cavities were prepared on the buccal surface of each tooth, which was randomly divided into seven groups (n = 20). Cavities were restored by two low-viscosity and three high-viscosity bulk-fill resin-based composites or two conventional resin-based composites. All the samples were artificially aged. The percentage of debonding formation (D%) was calculated at baseline and 6 months later using optical coherence tomography (OCT). The OCT data were statistically analysed using one-way ANOVA, and the effects of composite type and artificial ageing were analysed via two-way ANOVA.

Results: For Class V restorations, two low-viscosity bulk-fill resin-based composites generated significantly lower D% (p <0.05). Two-way ANOVA revealed that both composite type and artificial ageing significantly influenced internal adaptation (p <0.05).

Conclusion: The low-viscosity bulk-fill resin composites demonstrated better internal adaptation both before and after artificial ageing.

Key words: Bulk-fill resin composite, Debonding formation, Artificial ageing, Optical coherence tomography, Class V.

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填充型树脂基复合材料对V类修复体内部适应性的影响
目的:探讨体填料、树脂基复合材料(高、低粘度)对V类修复体内部适应性的影响。研究设计:实验研究。研究地点和时间:中国合肥市合肥市口腔医院,时间:2022年10月至2023年12月。方法:收集140颗拔除的人前磨牙。在每颗牙颊面制备V类空腔,随机分为7组(n = 20)。采用两种低粘度和三种高粘度块填充树脂基复合材料或两种常规树脂基复合材料修复腔体。所有的样品都经过人工老化。在基线和6个月后使用光学相干断层扫描(OCT)计算脱粘形成的百分比(D%)。采用单因素方差分析对OCT数据进行统计学分析,采用双因素方差分析分析复合类型和人工老化的影响。结果:在V类修复体中,两种低粘度体填充树脂基复合材料产生的D% (p)明显较低。结论:低粘度体填充树脂基复合材料在人工老化前后均表现出较好的内部适应性。关键词:大块填充树脂复合材料,脱粘形成,人工老化,光学相干层析,V类
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