Assessment of Color Difference of Translucent Zirconia Substructure Veneered Using a Layering Technique with Two Different Veneering Thicknesses: An in-vitro study

Noora Berhaim, N. Misurati, M. Eshah, M. Zeglam, Hager Ashiki
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Abstract

Background and objectives. The introduction of zirconia to the dental field created a path for development of new designs and applications, but still, a minimum framework thickness of 0.5 mm with the remaining thickness of the restoration used for building the ceramic veneer was always recommended. This might have possibly affected the final shade of the restoration due to the whitish color of Y-TZP. This in vitro study was designed to assess the color difference of translucent zirconia substructure veneered using a traditional layering technique with two different veneering thicknesses. Methods. A total of twenty translucent Ice zirconia disc samples with standardized dimensions 12 mm in a diameter, 0.5mm in thickness were designed and constructed using zirkonzahn system. The samples were classified into two groups: Group I: (n = 10) veneered by 0.5 mm thickness layering technique using IPS emax Ceram dentin shade A2. Group II (n = 10) veneered by 1 mm thickness layering technique using IPS emax Ceram dentin shade A2. Twenty composite resin discs 12mm in diameter and 5mm in thickness in A3 shade, were fabricated to be bonded to ceramic specimens using Dual-curing translucent rely X Unicem automix Self-Adhesive Resin luting cement. Spectrophotometer was used to measure color parameters L*, a*, b* for all samples. ΔE values were measured to determine color differences between the specimens and the A2 VITA classical shade (target shade). ΔE values were compared with an acceptability threshold (ΔE=3.7). Independent t-test was used to analyze data (P<0.05) in this study and was analyzed using (SPSS) software, version 22. Results. The results showed that veneering thicknesses had a significant effect on the mean (ΔE) Values at P ≤ 0.001. The 0.5 mm veneer thickness showed the higher significant mean color difference (∆E) than the 1.0 mm veneering thickness where the recorded mean (ΔE) Values were (4.15±1.31) (2.65±1.39) respectively at p ≤ 0.001. Conclusions. This study concluded that 1.0 mm veneer thickness was the optimum thickness regarding color matching.
用两种不同贴面厚度的分层技术评估半透明氧化锆亚结构贴面的色差:体外研究
背景和目标。将氧化锆引入牙科领域为新设计和应用的发展创造了一条道路,但仍然建议最小框架厚度为0.5毫米,剩余厚度用于构建陶瓷贴面的修复。由于Y-TZP的颜色偏白,这可能影响了修复的最终阴影。本研究旨在评估两种不同贴面厚度的传统贴面技术对半透明氧化锆亚结构贴面的色差。方法。采用zirkonzahn系统设计和制作了20个标准化尺寸为直径12 mm、厚度0.5mm的半透明冰氧化锆圆盘样品。将样品分为两组:第一组(n = 10)采用0.5 mm厚度的IPS emax Ceram A2牙本质阴影贴面技术。第二组(n = 10)采用IPS emax Ceram A2牙本质遮光材料,采用厚度为1mm的贴面技术。制备了20个直径12mm、厚度5mm的A3色复合树脂圆盘,使用双固化半透明的rely X Unicem automix自粘树脂粘接水泥与陶瓷试样粘接。用分光光度计测定所有样品的颜色参数L*、a*、b*。测量ΔE值,以确定样品与A2 VITA经典色度(目标色度)之间的色差。将ΔE值与可接受阈值(ΔE=3.7)进行比较。本研究资料采用独立t检验(P<0.05),采用SPSS软件(version 22)进行分析。结果。结果表明,贴面厚度对平均值(ΔE)有显著影响,P≤0.001。0.5 mm贴面厚度的平均色差(∆E)高于1.0 mm贴面厚度,记录的平均值(ΔE)分别为(4.15±1.31)(2.65±1.39),p≤0.001。结论。本研究的结论是1.0 mm的单板厚度是颜色匹配的最佳厚度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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