Department of Prosthodontics, Faculty of Dentistry, Semmelweis University, Budapest, Hungary.
Károly Rácz Doctoral School of Clinical Medicine, Semmelweis University, Budapest, Hungary.
J Esthet Restor Dent. 2023 Sep;35(6):886-895. doi: 10.1111/jerd.13071. Epub 2023 Jun 19.
The aim of this in vitro study is to evaluate the masking ability of polymer-infiltrated ceramic-network materials (PICN) with different translucencies and thicknesses on multiple types of substrates.
Ceramic samples were prepared of VITA ENAMIC blocks in two different translucencies (2M2-T, 2M2-HT) in a thickness range of 0.5-2.5 mm (±0.05 mm). Layered specimens were obtained using composite substrates in nine shades and transparent try-in paste. Spectral reflectance of specimens was measured using a Konica Minolta CM-3720d spectrophotometer and D65 standard illumination. CIEDE2000 color difference (ΔE ) between two samples was evaluated using 50%:50% perceptibility and acceptability thresholds. Specular component of the reflection was examined with Specular Component Excluded (SCE) and Included (SCI) settings. Statistical evaluation was performed by linear regression analysis, Kruskal-Wallis test, and multiplicative effect analysis.
An increase in thickness of 0.5 mm reduces ΔE of HT samples to 73.5%, of T samples to 60.5% (p < 0.0001). Five substrates with HT specimens, and three substrates with T specimens had significantly different results from average (p < 0.05). There is a significant difference between SCE and SCI data depending on the wavelength (p < 0.0001).
Masking ability of PICN materials is influenced by the thickness and translucency of the ceramic, and by the substrate. Reflection of the examined PICN material is characterized by both diffuse and specular reflection.
Although PICN materials have been available on the market for 10 years now, there is a lack of information regarding their masking ability. Acquiring in-depth data and thereby practical experience of the factors affecting the esthetics of PICN materials is essential for creating perfectly lifelike restorations.
本体外研究旨在评估不同透明度和厚度的聚合物渗透陶瓷网络材料(PICN)对多种基底的掩蔽能力。
使用两种不同透明度(2M2-T、2M2-HT)的 VITA ENAMIC 块在 0.5-2.5mm(±0.05mm)的厚度范围内制备陶瓷样本。使用复合基底和透明试戴糊剂获得分层样本。使用 Konica Minolta CM-3720d 分光光度计和 D65 标准照明测量样本的光谱反射率。使用 50%:50%可感知和可接受的阈值评估两个样本之间的 CIEDE2000 色差(ΔE)。使用 Specular Component Excluded(SCE)和 Included(SCI)设置检查反射的镜面分量。通过线性回归分析、Kruskal-Wallis 检验和乘法效应分析进行统计评估。
厚度增加 0.5mm 可将 HT 样本的ΔE 降低至 73.5%,T 样本的ΔE 降低至 60.5%(p<0.0001)。有 5 个 HT 样本的基底和 3 个 T 样本的基底的结果与平均值有显著差异(p<0.05)。取决于波长,SCE 和 SCI 数据之间存在显著差异(p<0.0001)。
PICN 材料的掩蔽能力受陶瓷的厚度和透明度以及基底的影响。所检查的 PICN 材料的反射具有漫反射和镜面反射的特征。
尽管 PICN 材料已经在市场上销售了 10 年,但关于其掩蔽能力的信息仍然缺乏。深入了解影响 PICN 材料美学效果的因素并获得实践经验对于创造逼真的修复体至关重要。