Priya Bharti, Arora Anshul, Taneja Sonali
Department of Conservative Dentistry and Endodontics, ITS Dental College, Ghaziabad, Uttar Pradesh, India.
J Conserv Dent Endod. 2024 Aug;27(8):866-872. doi: 10.4103/JCDE.JCDE_55_24. Epub 2024 Aug 7.
Color matching and stability are the essential considerations in restorative dentistry, as they contribute to the longevity and esthetic appeal of the restorations. Composites with nanoparticles and more filler content are anticipated to be more color-stable.
The aim of the study was to assess and contrast the color stability of esthetic restoration materials following exposure to various antioxidant beverages.
A Class V cavity was prepared on the buccal surface of 40 maxillary premolars. The specimens were divided into two groups: microhybrid (MH) and nanohybrid (NH) composite. The baseline color of each tooth sample was measured and then, the samples were categorized into four subgroups based on the immersion solution (pomegranate juice, beetroot juice, black plum juice, and distilled water) and evaluated on day 1, day 7, day 14, and day 21 using a spectrophotometer-based on CIE Lab* color scale. For spectrophotometer analysis, CIE XYZ data were obtained and converted to CIELAB. The samples mean difference in ΔE values before and after being immersed in various beverages.
The data were statistically analyzed using an independent -test and one-way analysis of variance.
MH and NH composite materials showed color change after being exposed to the test beverages.
MH composite causes more color change than NH composite at all-time intervals. Black plum showed the greatest discoloration in both composites.
颜色匹配和稳定性是口腔修复学中的重要考量因素,因为它们有助于修复体的长期使用和美观。含有纳米颗粒且填料含量更高的复合材料预计颜色更稳定。
本研究的目的是评估和对比美观修复材料在接触各种抗氧化饮料后的颜色稳定性。
在40颗上颌前磨牙的颊面制备V类洞。将标本分为两组:微混合(MH)复合材料和纳米混合(NH)复合材料。测量每个牙齿样本的基线颜色,然后根据浸泡溶液(石榴汁、甜菜根汁、黑李子汁和蒸馏水)将样本分为四个亚组,并在第1天、第7天、第14天和第21天使用基于CIE Lab*色标的分光光度计进行评估。对于分光光度计分析,获取CIE XYZ数据并转换为CIELAB。样本在浸泡于各种饮料前后的ΔE值的平均差异。
使用独立t检验和单因素方差分析对数据进行统计分析。
MH和NH复合材料在接触测试饮料后均出现颜色变化。
在所有时间间隔内,MH复合材料比NH复合材料引起的颜色变化更大。黑李子在两种复合材料中均显示出最大的变色。