纳米杂化填料与亚微米复合树脂聚合后色度变化的比较

Reynald Irawan, A. Dwisaptarini, Elline Istanto, J. Sudiono
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引用次数: 0

摘要

背景:聚合前复合树脂的初始颜色测定对于获得模仿原始牙齿颜色的美观效果至关重要。尽管复合树脂的化学组成和填料有所改善,但填料的粒度和组成会影响聚合后复合树脂的颜色变化。目的:研究纳米杂化填料和亚微米复合树脂对聚合后颜色变化的影响。方法:圆盘状复合树脂样品(直径和厚度为12 mm和2 mm)根据填充物的阴影和类型(纳米杂化物UD1、UD2、UD3;亚微米OA1、OA2、OA3)分为六组,每组包含10块板。数码照片是在聚合前后拍摄的。通过eLABor_aid使用软件确定颜色变化(ΔEFNx01ab值)。结果:只有Micerium-EHRi-UD1复合树脂组的ΔEFNx01ab<3.3。独立t检验显示,在所有遮光组(A1、A2和A3)中,纳米杂化树脂和亚微米复合树脂之间的ΔEFNx01ab存在显著差异(P<0.05)。单向方差分析显示,在纳米杂化树脂组和亚微米复合树脂组之间,A1、A2和A3的ΔEFNx01ab存在显著差异(P<0.05)。Tukey的事后检验显示,Micerium EHRi UD1组的ΔEFNx01ab与UD2和UD3组相比存在显著差异(P<0.05),Tokuyama Palfique OA1组与OA2和OA3组相比也存在显著差异。结论:纳米杂化填料和亚微米复合树脂对聚合后的颜色变化有影响。与较暗的颜色组相比,较亮的色调(UD1和OA1)表现出较低的强度颜色变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison between nanohybrid filler and submicron composite resin shade on color changes after polymerization
Background: Initial color determination of composite resins before polymerization is crucial to achieve an esthetic result that mimics the original tooth color. A filler particle size and composition affect the color change of the composite resin after polymerization despite the improvement in the chemical composition and filler of the composite resin. Objective: The effects of nanohybrid filler and submicron composite resin shade on color changes after polymerization were determined. Methods: Disc-shaped composite resin samples (diameter and thickness of 12 mm and 2 mm, respectively) were categorized into six groups, with each group containing 10 plates, according to the shade and type of filler (nanohybrid UD1, UD2, UD3; submicron OA1, OA2, OA3). Digital photographs were taken before and after polymerization. The changes in color (ΔEFNx01ab values) were determined using software via eLABor_aid. Result: Only the Micerium EHRi UD1 composite resin group exhibited ΔEFNx01ab < 3.3. The independent t-test revealed significant differences in the ΔEFNx01ab (P < 0.05) between the nanohybrid and submicron composite resins in all shade groups (A1, A2, and A3). One-way analysis of variance revealed significant differences in ΔEFNx01ab (P < 0.05) among A1, A2, and A3 between the nanohybrid and submicron composite resin groups. Tukey’s post hoc test revealed significant differences in ΔEFNx01ab (P < 0.05) for the Micerium EHRi UD1 group compared with those of the UD2 and UD3 groups, as well as in the case of the Tokuyama Palfique OA1 group compared with those of the OA2 and OA3 groups. Conclusion: Nanohybrid filler and submicron composite resin shade affected color changes after polymerization. Compared to the darker color groups, brighter shades (UD1 and OA1) exhibited a lower-intensity color change.
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