Restorative Dentistry, Oregon Health & Science University, Portland, OR, USA.
Oper Dent. 2011 Mar-Apr;36(2):205-12. doi: 10.2341/10-162-L. Epub 2011 Jun 24.
The purpose of this study was to evaluate surface finish and gloss of a two-step composite finishing/polishing (F/P) disc system compared with two multistep systems on five composites.
Seventy-five disc-shaped composite specimens (D=10.0 mm, 2 mm thick, n=15 per composite) were made of microfill (Durafill-D), nanofill (Filtek Supreme-FS), nanohybrid (Premise-PR), and microhybrids (Filtek Z250-FZ, Esthet-EX). One side of each specimen was initially finished with a carbide bur. Five specimens of each resin composite were randomly assigned to receive full F/P by each of the disc systems: two-step (Enhance Flex NST-EF) and four-step (Sof-Lex-SL, Super-Snap-SS). Surface gloss was measured with a glossmeter and surface roughness was measured with a profilometer. Results were analyzed by two-way analysis of variance (ANOVA)/Tukey's (α<0.05).
No difference in gloss was noted among the three F/P systems when used with D and EX; no difference between SL and EF when used with any composite, except for FS; and no difference between SL and SS when used with any composite. SL and EF showed similar surface roughness when used on all composites, except for EX. EF and SS showed similar surface roughness on PR. SL and SS showed similar surface roughness values on every composite, except for FZ.
EF was capable of providing similar gloss and surface roughness to SL on four composites evaluated but was not able to produce as glossy or as smooth a surface as SS for three of the five composites.
本研究旨在评估两步式复合修整/抛光(F/P)盘系统的表面光洁度和光泽度,与两种多步系统相比,对五种复合材料进行比较。
制作了 75 个圆盘状复合试件(D=10.0mm,2mm 厚,每种复合材料 15 个试件),分别为微填料(Durafill-D)、纳米填料(Filtek Supreme-FS)、纳米杂化(Premise-PR)和微杂化(Filtek Z250-FZ,Esthet-EX)。每个试件的一侧用碳化硅车针进行初始打磨。将每个树脂复合材料的五个试件随机分配给每个盘系统进行全 F/P:两步式(Enhance Flex NST-EF)和四步式(Sof-Lex-SL、Super-Snap-SS)。使用光泽计测量光泽度,使用轮廓仪测量表面粗糙度。结果采用双向方差分析(ANOVA)/Tukey 检验(α<0.05)进行分析。
当使用 D 和 EX 时,三种 F/P 系统之间的光泽度没有差异;当使用任何复合材料时,SL 和 EF 之间没有差异,除了 FS;当使用任何复合材料时,SL 和 SS 之间没有差异。当用于所有复合材料时,SL 和 EF 显示出相似的表面粗糙度,除了 EX。当用于所有复合材料时,EF 和 SS 显示出相似的表面粗糙度,除了 PR。当用于每个复合材料时,SL 和 SS 显示出相似的表面粗糙度值,除了 FZ。
EF 能够在评估的四种复合材料上提供与 SL 相似的光泽度和表面粗糙度,但对于五种复合材料中的三种,EF 无法产生 SS 那样有光泽或光滑的表面。