可流动树脂与声波激活或预热树脂复合材料在宫颈病变中的边缘适应性对比。

Danica Scepanovic, Matej Par, Thomas Attin, Tobias T Tauböck
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引用次数: 0

摘要

目的:研究使用预热和非预热复合材料、可流动复合材料、声波活化复合材料以及使用近红外技术预热的新型热粘性散装复合材料对人类臼齿 V 类龋洞进行修复时的边缘完整性:在 60 颗人类下颌磨牙的颊面制备标准化龋洞,并在使用蚀刻-冲洗粘合剂(OptiBond FL,Kerr 公司)后用以下一种树脂复合材料进行修复:非预热或预热传统复合材料(Filtek Supreme XTE,3M 口腔护理公司)、预热热粘性复合材料(VisCalor bulk,Voco 公司)、声波活化复合材料(SonicFill 3,Kerr 公司)或可流动复合材料(Filtek Supreme XTE Flowable,3M 口腔护理公司)。光固化和抛光后,在热机械加载(TML)前后使用扫描电子显微镜评估修复体在釉质和牙本质中的连续边缘百分比(PCM)。热机械加载在计算机控制的咀嚼器中进行了 3000 次热循环(5°C-50°C),并同时施加了 120 万次加载循环(1.7 Hz,49 N)的机械应力。使用 Wilcoxon、Kruskal-Wallis 和 Mann-Whitney U 检验(α = 0.05)进行了非参数统计分析:所有组的釉质和牙本质在 TML 之后边缘完整性都明显下降。尽管在 TML 之前,釉质中的流动组和牙本质中的雪犁组显示出最高的 PCM,但在 TML 之后,组间差异得到了补偿:结论:所有测试过的复合材料和应用方法在热机械加载后都显示出相似的边缘整合度,建议临床应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Marginal Adaptation of Flowable vs Sonically Activated or Preheated Resin Composites in Cervical Lesions.

Purpose: To investigate marginal integrity of restorations applied with preheated and non-preheated composite, flowable composite, sonically activated composite, and a new thermo-viscous bulk-fill composite using near-infrared technology for preheating, in class V cavities of human molars.

Materials and methods: Standardized cavities were prepared on the buccal surfaces of 60 human mandibular molars and restored with one of the following resin composite materials after application of an etch-and-rinse adhesive (OptiBond FL, Kerr): non-preheated or preheated conventional composite (Filtek Supreme XTE, 3M Oral Care), preheated thermo-viscous composite (VisCalor bulk, Voco), soncially activated composite (SonicFill 3, Kerr), or flowable composite (Filtek Supreme XTE Flowable, 3M Oral Care) applied in bulk or as a lining material using the snow-plow technique. After light curing and polishing, the percentage of continuous margins (PCM) of the restorations in enamel and dentin was assessed using SEM both before and after thermomechanical loading (TML). TML was carried out with 3000 thermal cycles (5°C-50°C) and a simultaneous mechanical stress application with 1.2 million load-cycles (1.7 Hz, 49 N) in a computer-controlled masticator. Non-parametric statistical analysis was performed using Wilcoxon, Kruskal-Wallis, and Mann-Whitney U-tests (α = 0.05).

Results: All groups revealed a significant decline in marginal integrity after TML in both enamel and dentin. Although the flowable group in enamel and the snow-plow group in dentin showed the highest PCM before TML, the differences between the groups were compensated after TML.

Conclusion: All of the tested composites and application methods showed similar marginal integrities after thermomechanical loading and can be recommended for clinical implementation.

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