不同粘度可流动复合树脂的颜色稳定性评价。

IF 3.9 3区 医学 Q1 ENGINEERING, MULTIDISCIPLINARY
Gülşah Yenier Yurdagüven
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引用次数: 0

摘要

仿生修复牙科旨在保持牙齿结构,并与周围牙列达到最佳的美学和谐。与仿生修复牙科相关的原则和协议旨在提高修复的寿命。流动cr的使用越来越普遍;然而,粘度对变色的影响尚未明确确定。这项体外研究旨在评估不同粘度的可流动cr在浸泡在普通染色溶液中并随后重新抛光后的颜色稳定性。用5种不同粘度的cr制备了250个碟形标本(8mm × 2mm):高粘度(Spectra STHV, Dentsply, Milford, DE, USA)、中粘度(Estelite Universal Flow Medium, Tokuyama Dental Co., Tokyo, Japan)、散装填充(Estelite bulk-fill Flow, Tokuyama Dental Co., Tokyo, Japan; SDR Plus, Dentsply, Milford, DE, USA)和可包装(Estelite Posterior, Tokuyama Dental Co., Tokyo, Japan)。聚合和基线颜色测量后,将标本浸泡在咖啡、茶、可乐、红酒或蒸馏水中144小时。染色前后记录颜色值,再抛光后再次记录颜色值。颜色变化(ΔE1, ΔE2, ΔE3)采用CIE Lab系统计算,采用双因素方差分析和Tukey HSD进行统计学分析(α = 0.05)。CR类型和染色溶液都对颜色变化有很大影响。SDR Plus的ΔE值最高。红酒引起的变色最多。在选定的组中重新抛光增强的颜色。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Color Stability of Various Flowable Composite Resins with Different Viscosities.

Biomimetic restorative dentistry aims to preserve tooth structure and achieve optimal aesthetic harmony with surrounding dentition. The principles and protocols associated with biomimetic restorative dentistry are designed to enhance the longevity of the restoration. The use of flowable CRs is increasingly common; however, the effect of viscosity on the discoloration has not been clearly established. This in vitro study aimed to assess the color stability of flowable CRs with varying viscosities following immersion in common staining solutions and subsequent repolishing. A total of 250 disc-shaped specimens (8 mm × 2 mm) were prepared from five CRs with different viscosity profiles: high-viscosity (Spectra STHV, Dentsply, Milford, DE, USA), medium-viscosity (Estelite Universal Flow Medium, Tokuyama Dental Co., Tokyo, Japan), bulk-fill (Estelite Bulk-Fill Flow, Tokuyama Dental Co., Tokyo, Japan; SDR Plus, Dentsply, Milford, DE, USA), and packable (Estelite Posterior, Tokuyama Dental Co., Tokyo, Japan). After polymerization and baseline color measurements, specimens were immersed in coffee, tea, cola, red wine, or distilled water for 144 h. Color values were recorded before and after staining, and again following repolishing. Color changes (ΔE1, ΔE2, ΔE3) were calculated using the CIE Lab system and statistically analyzed via two-way ANOVA and Tukey HSD (α = 0.05). Both the CR type and the staining solution substantially affected the color change. SDR Plus exhibited the highest ΔE values. Red wine caused the most discoloration. Repolishing enhanced color in selected groups.

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来源期刊
Biomimetics
Biomimetics Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.50
自引率
11.10%
发文量
189
审稿时长
11 weeks
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