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An in vitro evaluation of wear and surface roughness of particulate filler composite resin after tooth brushing

机译:刷牙后颗粒填料复合树脂的磨损和表面粗糙度的体外评估

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Objective. To evaluate the influence of tooth brushing on wear and surface roughness of four different particulate filler composite resins. Materials and methods. Six specimens (2 mm thick and 8 mm in diameter) of each tested material (Filtek Z250-Microhybrid, SpectrumTPH3-Submicron hybrid, Filtek Z350XT Nanofiller and Filtek P90- Microhybrid) were prepared according to the manufacturer's directions. A brushing sequence of 5000, 10 000 and 20 000 cycles was performed for all the samples. A non-contact profilometer was used to determine average surface roughness (Ra) and wear of the material assessed using an analytic electronic balance at baseline and each cycle interval. The data obtained were analyzed using one-way ANOVAs and post-hoc multiple comparison tests. Paired t-test was used for comparisons between cycle intervals for each material. Analyses with scanning electron microscopy (SEM) were also performed. Results. The resin composite Filtek P 90 presented an increase in percentage weight loss after final toothbrushing cycles over the rest of the materials. Brushing significantly increased roughness (Ra) for all composites. Filtek Z250, after brushing, was significantly rougher than the other resins followed by Filtek P 90, Spectrum TPH 3 and Filtek Z350 XT. However, SEM images indicated severe change in surface topography of 'sub-micron hybrid' specimen compared to each other after tooth brushing. Conclusions. Wear and surface roughness increased with each cycle interval for all the materials and one composite resin demonstrated a higher increase in surface roughness than the other three tested brands of composite resins. Not much difference was observed in the weight loss between tested samples.
机译:目的。为了评估牙刷对四种不同颗粒填料复合树脂的磨损和表面粗糙度的影响。材料和方法。根据制造商的指示准备了每种材料(Filtek Z250-Microhybrid,SpectrumTPH3-Submicron杂物,Filtek Z350XT Nanofiller和Filtek P90-Microhybrid)的六个样品(2 mm厚,直径8 mm)。对所有样品进行了5000、10000和20000次循环的刷洗顺序。使用非接触式轮廓仪来确定平均表面粗糙度(Ra)和使用分析电子天平在基线和每个周期间隔评估的材料的磨损。使用单向方差分析和事后多重比较测试对获得的数据进行分析。配对t检验用于每种材料的循环间隔之间的比较。还进行了扫描电子显微镜(SEM)分析。结果。与其他材料相比,树脂复合材料Filtek P 90在最终的牙刷循环后重量损失百分比增加。刷涂可显着提高所有复合材料的粗糙度(Ra)。刷涂后,Filtek Z250比其他树脂粗糙得多,其次是Filtek P 90,Spectrum TPH 3和Filtek Z350 XT。但是,SEM图像表明,刷牙后,“亚微米杂种”样品的表面形貌发生了严重变化。结论所有材料的磨损和表面粗糙度均随每个循环间隔的增加而增加,一种复合树脂的表面粗糙度增加量高于其他三个经过测试的复合树脂品牌。在测试样品之间的重量损失方面观察到的差别不大。

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