Yap Adrian U J, Ng J J, Yap S H, Teo C K
Department of Restorative Dentistry, Faculty of Dentistry, National University of Singapore, Republic of Singapore.
Oper Dent. 2004 Jan-Feb;29(1):87-91.
This study investigated the surface finish of resin-modified (Fuji II LC, GC) and highly viscous (Fuji IX GP Fast, GC) glass ionomer cements after treatment with three one-step finishing/polishing systems (One-Gloss [OG], Shofu; Pogo [PG], Dentsply; Sof-Lex Brush [SB], 3M-ESPE). The surface roughness obtained was compared to that using a matrix strip [MS], a two-step rubber abrasive (CompoSite [CS], Shofu) and a graded abrasive disk (Super Snap [SS], Shofu) system. Eight specimens (3-mm long x 3-mm wide x 2-mm deep) of each material were made for the various treatment groups. With the exception of the MS group, all groups were roughened with 320 grit grinding paper using a lapping device prior to finishing/polishing with the different systems. The mean surface roughness (microm) was measured with a profilometer. Data was subjected to ANOVA/Scheffe's tests at significance level 0.05. Mean Ra ranged from 0.13 to 1.04 microm for Fuji II LC and 0.14 to 0.81 for Fuji IX GP. For both materials, the smoothest surface was obtained with MS and the roughest with OG. Depending on the materials, the surface finish produced by PG and SB was superior or comparable to that obtained with CS and SS. The effectiveness of one-step systems, when used to finish/polish resin-modified and highly viscous glass ionomer cements, is product dependent.
本研究调查了用三种一步法修整/抛光系统(One-Gloss [OG],松风公司;Pogo [PG],登士柏公司;Sof-Lex Brush [SB],3M-ESPE公司)处理后的树脂改性(富士II LC,GC公司)和高粘性(富士IX GP Fast,GC公司)玻璃离子水门汀的表面光洁度。将获得的表面粗糙度与使用基质条带[MS]、两步法橡胶磨料(CompoSite [CS],松风公司)和分级磨盘(Super Snap [SS],松风公司)系统的表面粗糙度进行比较。为各个处理组制备了每种材料的八个试样(长3毫米×宽3毫米×深2毫米)。除MS组外,所有组在用不同系统进行修整/抛光之前,先用研磨装置用320目砂纸进行粗化处理。用轮廓仪测量平均表面粗糙度(微米)。数据在显著性水平0.05下进行方差分析/谢费检验。富士II LC的平均粗糙度Ra范围为0.13至1.04微米,富士IX GP的平均粗糙度Ra范围为0.14至0.81微米。对于这两种材料,使用MS获得的表面最光滑,使用OG获得的表面最粗糙。根据材料不同,PG和SB产生的表面光洁度优于或与CS和SS获得的表面光洁度相当。一步法系统用于修整/抛光树脂改性和高粘性玻璃离子水门汀时的有效性取决于产品。