Celik Ciğdem, Ozgünaltay Gül
Baskent University, School of Dentistry, Department of Conservative Dentistry, 06490, Bahcelievler, Ankara, Turkey.
Quintessence Int. 2009 Oct;40(9):783-9.
To evaluate the effect of 2 polishing systems on surface roughness of tooth-colored restorative materials.
The materials included 3 flowable resins (Admira Flow, Voco; Dyract Flow, Dentsply; Filtek Flow, 3M ESPE) and a micro?hybrid composite resin (Filtek Z250, 3M ESPE). Eighteen specimens of each material were prepared using a Plexiglas well covered by a Mylar strip (10 mm in diameter and 2 mm in depth). The Ra (baseline) was measured with a Mitutoyo Surftest-402 Surface Roughness Tester (Mitutoyo) with a standard cut-off value of 0.8 mm. Five tracings at different locations on each specimen were made. The specimens were then randomly divided into two finishing and polishing groups (n = 9): (1) Sof-Lex Pop-on disks (3M ESPE), and (2) Astropol and Astrobrush system (Ivoclar Vivadent). After finishing and polishing, surface roughness of the specimens was remeasured. Data were analyzed using 1- and 2-way ANOVA, at P < .05.
The Mylar strip produced the smoothest surface in all restorative materials, while 2-way ANOVA demonstrated a significant difference for the finishing and polishing procedures (P = .000). The smoothest surface was generated with Sof-Lex Pop-on disks for all the materials tested. In procedure 2 (diamond bur/Astropol and Astrobrush system), Admira Flow group received the highest average surface roughness value, and a significant difference was revealed between Admira Flow and the other resins (P = .001).
Sof-Lex Pop-on disks produced a smoother surface than Astropol and Astrobrush silicone polishers for microhybrid and flowable composites.
评估两种抛光系统对牙齿颜色修复材料表面粗糙度的影响。
材料包括3种流动树脂(Admira Flow,Voco公司;Dyract Flow,登士柏公司;Filtek Flow,3M ESPE公司)和1种微混合复合树脂(Filtek Z250,3M ESPE公司)。每种材料制备18个样本,使用覆盖有聚酯薄膜条(直径10毫米,深度2毫米)的有机玻璃槽制备。使用Mitutoyo Surftest - 402表面粗糙度测试仪(Mitutoyo公司)测量Ra(基线),标准截止值为0.8毫米。在每个样本的不同位置进行5次追踪。然后将样本随机分为两个修整和抛光组(n = 9):(1)Sof - Lex Pop-on盘(3M ESPE公司),(2)Astropol和Astrobrush系统(义获嘉伟瓦登特公司)。修整和抛光后,重新测量样本的表面粗糙度。使用单因素和双因素方差分析对数据进行分析,P < 0.05。
聚酯薄膜条在所有修复材料中产生最光滑的表面,而双因素方差分析表明修整和抛光程序存在显著差异(P = 0.000)。对于所有测试材料,Sof - Lex Pop-on盘产生最光滑的表面。在程序2(金刚石车针/Astropol和Astrobrush系统)中,Admira Flow组获得最高的平均表面粗糙度值,并且Admira Flow与其他树脂之间存在显著差异(P = 0.001)。
对于微混合和流动复合材料,Sof - Lex Pop-on盘比Astropol和Astrobrush硅抛光器产生更光滑的表面。