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首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Effect of dental finishing instruments on the surface roughness of composite resins as elucidated by atomic force microscopy
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Effect of dental finishing instruments on the surface roughness of composite resins as elucidated by atomic force microscopy

机译:原子力显微镜阐明牙科修整仪器对复合树脂表面粗糙度的影响

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Roughness increases significantly after finishing procedures. The aim of this study was to assess by the atomic force microscope (AFM) the effect of finishing instruments on the surface roughness of composite resins. A nanofiller composite resin (Filtek Supreme, 3M-F) and a microhybrid composite resin (Point 4, Kerr-P) were selected. The finishing procedures were done with a 30-blade carbide bur (C) and a 30-mu m finishing diamond bur (D). Standardized specimens were produced and divided into six experimental groups (n = 4) according to (1) composite resin, (2) absence of finishing (Mylar matrix-M), and (3) finishing instrument (FM, PM, FC, FD, PC, PD). The mean surface roughness was evaluated by AFM in the contact mode. FM and PM groups were assessed statistically by the Student's T test, and FC, FD, PC, PD groups were submitted to variance analysis (ANOVA), both at 5% significance. The mean surface roughness values, in nanometers, were FM, 23.63 (b); FC, 283.88 (c); FD, 510.55 (d); PM, 12.52 (a); PC, 343.98 (c); PD, 531.64 (d). Microhybrid composite displayed less roughness than nanofiller composite in the absence of finishing procedures. The 30-blade carbide bur produced less roughness compared to the extra fine diamond bur.
机译:在完成程序后,粗糙度会显着增加。这项研究的目的是通过原子力显微镜(AFM)评估精加工仪器对复合树脂表面粗糙度的影响。选择了纳米填料复合树脂(Filtek Supreme,3M-F)和微杂化复合树脂(Point 4,Kerr-P)。使用30刃硬质合金车针(C)和30微米精加工金刚石车针(D)进行精加工程序。根据(1)复合树脂,(2)没有精加工(Mylar matrix-M)和(3)精加工仪器(FM,PM,FC,FD),制作了标准样品并将其分为六个实验组(n = 4)。 ,PC,PD)。通过AFM在接触模式下评估平均表面粗糙度。通过学生的T检验对FM和PM组进行统计学评估,并将FC,FD,PC,PD组进行方差分析(ANOVA),两者均具有5%的显着性。以纳米为单位的平均表面粗糙度值为FM,23.63(b); FC,283.88(c); FD,510.55(d); PM,12.52(a); PC 343.98(c); PD,531.64(d)。在没有精加工程序的情况下,微混合复合材料的粗糙度要比纳米填料复合材料低。与超细金刚石车针相比,30刃硬质合金车针的粗糙度较小。

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