Effect of finishing and polishing systems on surface roughness and color stability of aesthetic restorations exposed to staining solution.

Ana C Ferreira Alvarenga, Kamila R Kantovitz, Cecília P Turssi, Roberta T Basting, Waldemir F Vieira-Junior, Fabiana Mg França
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Abstract

The color and the surface roughness of aesthetic restorations are related to the clinical sucess and longevity of these treatments. Aim: This study evaluated the influence of finishing and polishing systems, and storage media on the surface roughness and color stability of aesthetic restorative composites. Materials and Method: Cylindrical specimens (n=10) were prepared and treated according to: 1. Type of composite resin (nanofilled- Filtek Z350XT, suprananofilled- Estelite Omega, nanohybrid- Empress Direct); 2. Type of finishing and polishing systems (no polishing, aluminum oxide discs or abrasive rubber polishers); and 3. Type of immersion medium (water or coffee, 3 h/day/30 days). Surface roughness (Ra - μm) and color stability (L, ΔEab, and ΔE00) were evaluated at baseline (after polishing) and final time (after immersion). Data were subjected to Kruskal-Wallis, Mann-Whitney, Wilcoxon, and Student-Newman-Keuls tests (α=0.05). Results: Nanohybrid (p<0.001) and suprananofilled composite resins (p=0.004) showed an increase in Ra after polishing, regardless the finishing and polishing system. After immersion in coffee, the nanofilled composite had the highest roughness values (p=0.032). L values increased for all resins after polishing (p<0.05). Suprananofilled composites had the greatest color stability with the lowest values of ΔEab and ΔE00. Conclusions: Finishing and polishing systems had an impact on the surface roughness and color stability of all aesthetic resins, and their effectiveness depended on the type of composite resin.

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修饰和抛光系统对暴露在染色溶液中的美学修复体的表面粗糙度和颜色稳定性的影响。
美学修复体的颜色和表面粗糙度关系到这些治疗的临床成功率和使用寿命。目的:本研究评估了抛光和打磨系统以及储存介质对美学修复复合材料表面粗糙度和颜色稳定性的影响。材料和方法:制备圆柱形试样(n=10)并按照以下方法进行处理:1.复合树脂类型(纳米填充--Filtek Z350XT,超纳米填充--Estelite Omega,纳米混合--Empress Direct);2. 修整和抛光系统类型(无抛光、氧化铝盘或研磨橡胶抛光机);3.浸泡介质类型(水或咖啡,3 小时/天/30 天)。在基线(抛光后)和最终时间(浸泡后)对表面粗糙度(Ra - μm)和颜色稳定性(L、ΔEab 和 ΔE00)进行评估。对数据进行了 Kruskal-Wallis、Mann-Whitney、Wilcoxon 和 Student-Newman-Keuls 检验(α=0.05)。结果纳米杂交(p
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