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Effects of ultrasonic scaling on the optical properties and surface characteristics of highly translucent CAD/CAM ceramic restorative materials: An in vitro study

机译:超声波缩放对高透明度CAD / CAM陶瓷恢复材料的光学性质和表面特性的影响:体外研究

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摘要

Esthetic restorations using highly translucent ceramics powered by chairside digital dentistry are becoming popular. The purpose of this in vitro study was to investigate the impact of ultrasonic scaling on the optical and surface properties of highly translucent ceramic materials for digital dentistry. A resin nanoceramic (Lava Ultimate; LU), dual-network ceramic (Vita Enamic; VE), feldspathic ceramic (Vitablocs Mark II; VM), lithium disilicate ceramic (IPS e.max CAD; EX), and high-translucency monolithic zirconia (Rainbow Shine-T; MZ) were evaluated. All specimens were subjected to ultrasonic scaling, and the following data were obtained before and after scaling: color change (Delta E-00), translucency parameter, surface gloss, surface roughness, and superficial topography. One-way analysis of variance (ANOVA), repeated-measures ANOVA, and two-way ANOVA were used for intergroup comparisons (all alpha = 0.05). The mean Delta E-00 values were 0.243, 0.48, 1.591, 0.143, and 4.466 for LU, VE, VM, EX, and MZ, respectively, with statistically significant differences among the materials. With regard to Commission Internationale de Itclairage (CIE) L*, a*, and b* values, VE, VM, and MZ showed significantly decreased L* values relative to the baseline values. Moreover, MZ showed a significantly increased a* value and a significantly decreased b* value after scaling. Ultrasonic scaling also resulted in significant changes in the surface gloss of the LU, VE, VM, and MZ specimens. Micrographs showed scrapes and surface deterioration after scaling. For all materials, the translucency parameter and the surface roughness showed no significant differences between specimens that were subjected to scaling and those that were not. These findings suggest that ultrasonic scaling MARKEDLY affects the optical properties and surface characteristics of highly translucent computer-aided design and computer-aided manufacturing (CAD/CAM) ceramics. The findings can aid restorative dentists in the selection of appropriate materials and motivate periodontists for performing scaling procedures with due consideration of restorations in esthetically demanding areas.
机译:使用高度半透明的陶瓷技术支持的审议修复,这是董事旁数字牙科的欢迎。这种体外研究的目的是研究超声波缩放对数字牙科高度半透明陶瓷材料的光学和表面性质的影响。树脂纳米钙(LAVA终极; LU),双网络陶瓷(VITA纯属; VE),长期性陶瓷(VITABLOCS MARK II; VM),锂静止陶瓷(IPS E.Max CAD; EX),以及高半透明的整体氧化锆(彩虹Shine-T; MZ)进行了评估。所有标本都经过超声缩放,并在缩放之前和之后获得以下数据:颜色变化(Delta E-00),半透明参数,表面光泽,表面粗糙度和浅表地形。方差(ANOVA)的单向分析(ANOVA),重复测量ANOVA和双向ANOVA用于互动比较(所有alpha = 0.05)。平均delta e-00值分别为Lu,VM,VM,EX和MZ的0.243,0.48,1.591,0.143和4.466,材料之间具有统计学上显着的差异。关于Internationale De Itclairage(CIE)L *,A *和B *值,VE,VM和MZ显示相对于基线值的L *值显着降低。此外,MZ显示出显着增加的a *值,并且在缩放后显着降低的B *值。超声波缩放也导致Lu,VE,VM和MZ标本的表面光泽度显着变化。显微照片显示缩放后的刮擦和表面劣化。对于所有材料,半透明参数和表面粗糙度显示出对缩放的标本和那些没有的标本之间没有显着差异。这些发现表明,超声波缩放显着影响高度半透明的计算机辅助设计和计算机辅助制造(CAD / CAM)陶瓷的光学性质和表面特性。这些研究结果可以帮助恢复牙医选择适当的材料,并激励牙周论者进行缩放程序,以适当考虑在美学苛刻的区域中的修复部分。

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