Evaluation of the optical and surface properties of monolithic CAD-CAM ceramics after simulated tooth-brushing.

Esra Kaynak Öztürk,Seçil Karakoca Nemli,Bilge Turhan Bal,Merve Bankoğlu Güngör
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Abstract

STATEMENT OF PROBLEM Monolithic computer-aided design and computer-aided manufacturing (CAD-CAM) ceramics have various microstructures, but studies on their optical and surface properties after tooth-brushing are lacking. PURPOSE The purpose of this in vitro study was to evaluate the changes in the color, gloss, surface roughness, and surface topography of different monolithic CAD-CAM ceramics after simulated tooth-brushing and compare the tested parameters of the different ceramics. MATERIAL AND METHODS Ninety specimens were prepared with a 1.5-mm thickness from 9 different materials: monolithic zirconia (ZR), lithium disilicate ceramics (precrystallized and crystallized), zirconia reinforced lithium silicate ceramics (precrystallized and crystallized), interpenetrating network ceramic, leucite reinforced ceramic, feldspathic ceramic, and interpenetrating network nanoceramics (n=10). After mechanical polishing, the color parameters, gloss, and surface roughness values of each specimen were measured. Then, the specimens were subjected to 50 000 tooth-brushing cycles. After the brushing simulation, the color change (ΔE00) values were calculated, and the gloss and surface roughness values of the specimens were measured. Data were statistically analyzed with 2-way repeated measures of ANOVA and Bonferroni multiple comparison tests (α=.05). RESULTS The brushing simulation and ceramic type affected the gloss and surface roughness values of the tested ceramics (P<.001). The surface roughness values of the ceramics increased after 50 000 cycles of simulated brushing. The surface gloss of the ZR group significantly increased after 50 000 cycles of simulated brushing (P<.001). Only the ceramic type affected the color change values (P<.001). The color change value (ΔE00) of ZR was the highest among the tested materials, exceeding the perceptibility threshold after 50 000 cycles, while the ΔE00 of the other materials was lower. CONCLUSIONS Simulated tooth-brushing affected the surface gloss and surface roughness of the tested materials. The ceramic type affected the surface gloss, surface roughness, and color change values. Except for the monolithic zirconia, the color change values were below the perceptibility threshold (0.8) in the experimental groups.
评估模拟刷牙后整体 CAD-CAM 陶瓷的光学和表面特性。
本体外研究的目的是评估不同的整体计算机辅助设计和计算机辅助制造(CAD-CAM)陶瓷在模拟刷牙后颜色、光泽、表面粗糙度和表面形貌的变化,并比较不同陶瓷的测试参数。材料和方法用 9 种不同的材料制备了 90 个厚度为 1.5 毫米的试样:整体氧化锆(ZR)、二硅酸锂陶瓷(预结晶和结晶)、氧化锆增强硅酸锂陶瓷(预结晶和结晶)、互穿网络陶瓷、白榴石增强陶瓷、长石陶瓷和互穿网络纳米陶瓷(n=10)。机械抛光后,测量每个试样的颜色参数、光泽度和表面粗糙度值。然后,对试样进行 50 000 次刷牙循环。模拟刷牙后,计算颜色变化(ΔE00)值,并测量试样的光泽度和表面粗糙度值。结果刷牙模拟和陶瓷类型影响了受测陶瓷的光泽度和表面粗糙度值(P<.001)。陶瓷的表面粗糙度值在模拟刷洗 50 000 次后有所增加。模拟刷洗 50 000 次后,ZR 组的表面光泽度明显增加(P<.001)。只有陶瓷类型会影响颜色变化值(P<.001)。ZR 的变色值(ΔE00)是所有测试材料中最高的,在 50 000 次循环后超过了可感知阈值,而其他材料的ΔE00 则较低。陶瓷类型会影响表面光泽度、表面粗糙度和颜色变化值。除整体氧化锆外,实验组的颜色变化值均低于可感知阈值(0.8)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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