Sarul Michał, Mikulewicz Marcin, Kozakiewicz Marcin, Jurczyszyn Kamil
Department of Integrated Dentistry, Wroclaw Medical University, Krakowska 26, 50-425 Wroclaw, Poland.
Department of Dentofacial Orthopedics and Orthodontics, Division of Facial Abnormalities, Wroclaw Medical University, Krakowska 26, 50-425 Wroclaw, Poland.
Materials (Basel). 2022 Mar 11;15(6):2071. doi: 10.3390/ma15062071.
The surface topography of orthodontic brackets can have a significant impact on both the effectiveness of the therapy and the behavior of these elements in the oral cavity environment. In this situation, striving to obtain the most uniform, smooth surface in a repeatable manner for each manufactured element should be a sine qua non condition for each supplier of orthodontic brackets. Therefore, it is necessary to analyze the surfaces of orthodontic brackets using different methods. One of them-that is relatively simple and repeatable-is the analysis of the fractal dimension and the analysis of the textures of the optical images on the surface. In the presented study, fractal dimension analysis and texture analysis were performed by selecting four brackets from three different manufacturers (Mini Sprint, Sprint, Nu-Edge, Orthos SS). The area of each bracket slot was analyzed at six predefined points. The smoothest and most uniform and reproducible surface structure was shown by the Mini Sprint bracket. On the other hand, Sprint brackets showed the least homogeneous and least repeatable surface structure.
正畸托槽的表面形貌可能会对治疗效果以及这些部件在口腔环境中的性能产生重大影响。在这种情况下,每个正畸托槽供应商都应将以可重复的方式获得最均匀、光滑的表面作为首要条件。因此,有必要使用不同方法分析正畸托槽的表面。其中一种相对简单且可重复的方法是分形维数分析和表面光学图像纹理分析。在本研究中,通过从三个不同制造商(Mini Sprint、Sprint、Nu-Edge、Orthos SS)中选取四个托槽进行分形维数分析和纹理分析。在六个预定义点分析每个托槽槽沟的面积。Mini Sprint托槽显示出最光滑、最均匀且可重复的表面结构。另一方面,Sprint托槽显示出最不均匀且最不可重复的表面结构。