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The effect of one-step and multi-step polishing systems on the surface roughness and microhardness of novel resin composites

机译:一步和多步抛光系统对新型树脂复合材料表面粗糙度和显微硬度的影响

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Objectives:The objective of this in vitro study was to evaluate the surface roughness and micro-hardness of three novel resin composites containing nanoparticles after polishing with one-step and conventional multi-step polishing systems.Methods:A total of 126 specimens (10 X 2 mm) were prepared in a metal mold using three nano-composites (Filtek Supreme XT, Ceram-X, and Grandio), 21 specimens of each resin composite for both tests (n=63 for each test). Following light curing, seven specimens from each group received no polishing treatment and served as controls for both tests. The specimens were randomly polished using PoGo and Sof-Lex systems for 30 seconds after being wet-ground with 1200-grit silicon carbide paper. The mean surface roughness of each polished specimen was determined with a profilometer. The microhardness was determined using a Vickers hardness measuring instrument with a 200-g load and 15 seconds dwell time. The data were analyzed using the Kruskal-Wallis test and the post hoc Dunn's multiple comparison tests at a significance level of .05.Results:Among all materials, the smoothest surfaces were obtained under a matrix strip (control) (P.05). The lowest hardness values for the three resin composites were obtained with a matrix strip, and there was a statistically significant difference compared with other polishing systems (P.05).Conclusion:The current one-step polishing system appears to be as effective as multi-step systems and may be preferable for polishing resin composite restorations.
机译:目的:这项体外研究的目的是评估三种含纳米粒子的新型树脂复合材料的单步抛光和常规多步抛光系统的表面粗糙度和显微硬度。方法:总共126个样品(10 X使用三种纳米复合材料(Filtek Supreme XT,Ceram-X和Grandio)在金属模具中制备2毫米),每种树脂复合材料的21个样品用于两个测试(每个测试n = 63)。光固化后,每组的七个样品未进行抛光处理,并作为两个测试的对照。用1200粒度的碳化硅纸湿磨后,使用PoGo和Sof-Lex系统将样品随机抛光30秒。用轮廓仪测定每个抛光样品的平均表面粗糙度。使用维氏硬度测量仪以200g的载荷和15秒的停留时间测定显微硬度。使用Kruskal-Wallis检验和事后Dunn多重比较检验对数据进行了分析,显着性水平为.05。这三种树脂复合材料的最低硬度值是通过基体胶条获得的,与其他抛光系统相比有统计学差异(P.05)。结论:目前的单步抛光系统似乎与多步抛光系统一样有效。步系统,对于抛光树脂复合材料修复体可能是优选的。

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