Karakoca Nemli Seçil, Bankoğlu Güngör Merve, Bağkur Meral, Turhan Bal Bilge, Kasko Arıcı Yeliz
Department of Prosthodontics, Faculty of Dentistry, Gazi University, Ankara, Turkey.
Biostatistics and Medical Informatics Department, Faculty of Medicine, Ordu University, Ordu, Turkey.
J Adv Prosthodont. 2018 Dec;10(6):422-429. doi: 10.4047/jap.2018.10.6.422. Epub 2018 Dec 19.
Accurate color matching of maxillofacial prostheses to skin is important for esthetics. A computerized color matching system specific to human skin has recently been developed. The purpose of this study was to evaluate the accuracy in color and translucency matching of the computerized color matching system across different skin colors.
The silicone was colored to simulate 28 different skin colors (n=5) to serve as "target skin colors". Using a spectrocolorometer (e-skin), color codes were determined for "replicate skin color" fabrication. CIELAB Delta-E between target skin color-replicate skin color pairs and translucency parameter were calculated. CIELAB Delta-E values were compared with one-way ANOVA and Tukey multiple-comparison. The agreement between L*, a*, b* and translucency parameter of target skin colors and replicate skin color were calculated by a two-way mixed average measures intraclass correlation coefficient. Translucency parameter of target skin color-replicate skin color pairs were compared with Paired t-test (α=.05).
The mean CIELAB Delta-E value was 3.83 and significant differences were found among colors. The intraclass correlation coefficient showed excellent reliability for L*, a*, b* and good reliability for translucency parameter (<.001). The mean translucency parameter of replicate skin colors was significantly higher than that of translucency parameter.
The computerized color matching system specific to human skin was found to be reliable in terms of color and translucency between target skin colors and replicate skin color.
颌面修复体与皮肤的精确颜色匹配对美观至关重要。最近开发了一种针对人类皮肤的计算机化颜色匹配系统。本研究的目的是评估该计算机化颜色匹配系统在不同肤色下颜色和透明度匹配的准确性。
将硅胶染色以模拟28种不同肤色(n = 5)作为“目标肤色”。使用分光测色仪(e-skin)确定用于制作“复制肤色”的颜色代码。计算目标肤色与复制肤色对之间的CIELAB Delta-E和透明度参数。使用单因素方差分析和Tukey多重比较对CIELAB Delta-E值进行比较。通过双向混合平均测量组内相关系数计算目标肤色与复制肤色的L*、a*、b*和透明度参数之间的一致性。使用配对t检验(α = 0.05)比较目标肤色与复制肤色对的透明度参数。
平均CIELAB Delta-E值为3.83,不同颜色之间存在显著差异。组内相关系数显示L*、a*、b*具有出色的可靠性,透明度参数具有良好的可靠性(<0.001)。复制肤色的平均透明度参数显著高于目标肤色的透明度参数。
发现针对人类皮肤的计算机化颜色匹配系统在目标肤色与复制肤色之间的颜色和透明度方面是可靠的。