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Surface roughness and morphology of dental nanocomposites polished by four different procedures evaluated by a multifractal approach

机译:通过多重分形方法评估的四种不同程序抛光的牙科纳米复合材料的表面粗糙度和形态

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The objective of this study was to determine the effect of different dental polishing methods on surface texture parameters of dental nanocomposites. The 3-D surface morphology was investigated by atomic force microscopy (AFM) and multifractal analysis. Two representative dental resin-based nanocompo sites were investigated: a nanofilled and a nanohybrid composite. The samples were polished by two dental polishing protocols using multi-step and one-step system. Both protocols were then followed by diamond paste polishing. The 3-D surface roughness of samples was studied by AFM on square areas of topography on the 80 x 80 mu m(2) scanning area. The multifractal spectrum theory based on computational algorithms was applied for AFM data and multifractal spectra were calculated. The generalized dimension D-q and the singularity spectrum f(alpha) provided quantitative values that characterize the local scale properties of dental nanocomposites polished by four different dental polishing protocols at nanometer scale. The results showed that the larger the spectrum width Delta alpha(Delta alpha=alpha(max)-alpha(min)) of the multifractal spectra f(alpha), the more non-uniform was the surface morphology. Also, the 3-D surface topography was described by statistical parameters, according to ISO 25178-2:2012. The 3-D surface of samples had a multifractal nature. Nanofilled composite had lower values of height parameters than nanohybrid composites, due to its composition. Multi-step polishing protocol created a better finished surface, for both tested materials, than one-step polishing protocol, even when it was followed by diamond paste polishing. Diamond paste polishing created smooth surface and reduced roughness of tested materials. (C) 2014 Elsevier B.V. All rights reserved.
机译:这项研究的目的是确定不同的牙科抛光方法对牙科纳米复合材料表面纹理参数的影响。通过原子力显微镜(AFM)和多重分形分析研究了3-D表面形态。研究了两个代表性的基于牙科树脂的纳米复合材料站点:纳米填充复合材料和纳米复合材料。使用多步和一步系统通过两种牙科抛光方案对样品进行抛光。然后在两个方案之后进行金刚石膏抛光。通过AFM在80 x 80μm(2)扫描区域的地形正方形区域上研究了样品的3-D表面粗糙度。将基于计算算法的多重分形光谱理论应用于AFM数据,并计算了多重分形光谱。广义尺寸D-q和奇异谱f(alpha)提供了定量值,这些值表征了通过纳米尺度上的四种不同牙科抛光方案抛光的牙科纳米复合材料的局部尺度特性。结果表明,多重分形光谱f(α)的光谱宽度Δα(Δα=α(最大)-α(最小))越大,表面形态越不均匀。此外,根据ISO 25178-2:2012,通过统计参数描述了3-D表面形貌。样品的3-D表面具有多重分形性质。纳米填充的复合物由于其组成而具有比纳米杂化复合物低的高度参数值。与单步抛光方案相比,即使随后进行金刚石糊剂抛光,多步抛光方案也能为两种测试材料提供更好的最终表面。金刚石膏抛光可产生光滑的表面并降低测试材料的粗糙度。 (C)2014 Elsevier B.V.保留所有权利。

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