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Dental arch monitoring by splines fitting error during orthodontic treatment using 3D digital models

机译:使用3D数字模型在正畸治疗过程中通过花键拟合误差监测牙弓

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Backrgound/Aim. Researchers in the field of dentistry have been conducting research into modelling and defining dental arches equitations. Nowadays, when 3D digital modelling is commonly utilized in dentistry, the approach to modelling, analysis and synthesis has changed. Clinical researches are related to aesthetic and functional analysis. The aim of this study was to increase repeatability and accuracy of defining and determining the coordinate system of the jaw as well as to defining mathematical criteria for monitoring and evaluating orthodontic treatment. Methods. In this study, we used the plaster models of the jaw, optical scanner with structured light, 3D digital models, computer aided design (CAD) engineering tools adjusting the coordinate system, spline fitting of 3rd, 4th, 5th, 6th, 7th and 8th degrees. Results. Splines of 3rd, 4th, 5th, 6th, 7th and 8th degrees were fitted from the initial state (K0) in all 10 successive controls (K1, K2, K3,…, K10). All splines were fitted through 12 points, from the right to the left side of the jaw: 6-5-4-3-2-1-1-2-3-4-5-6. Tabular and graphic presentations of the maximum and average deviation of dental arch fitting curves in successive controls were given. Conclusion. The parameters of the maximum and average errors of fitting curves converge the dental arch values that are lower than the accuracy of the used optical scanners. The average error of fitting provides a general picture of the entire dental arch at each stage of treatment. Maximum error fitting points at a specified tooth where the largest deviation. This article has been corrected.
机译:Backrgound /目标。牙科领域的研究人员一直在进行建模和定义牙弓装置的研究。如今,当牙科领域普遍采用3D数字建模时,建模,分析和综合的方法已经改变。临床研究与美学和功能分析有关。这项研究的目的是提高定义和确定颌骨坐标系的可重复性和准确性,以及定义用于监测和评估正畸治疗的数学标准。方法。在这项研究中,我们使用了颌骨的石膏模型,结构化光的光学扫描仪,3D数字模型,调整坐标系的计算机辅助设计(CAD)工程工具,第3、4、5、6、7和8号样条拟合度。结果。在所有10个连续的控件(K1,K2,K3,…,K10)中,从初始状态(K0)拟合了3、4、5、6、7和8度样条。从下巴的右侧到左侧,通过12个点拟合了所有样条线:6-5-4-3-2-1-1-2-3-4-5-6。表格和图形显示了连续控制中牙弓拟合曲线的最大和平均偏差。结论。拟合曲线的最大误差和平均误差的参数会收敛低于使用的光学扫描仪精度的牙弓值。拟合的平均误差提供了每个治疗阶段整个牙弓的总体情况。最大误差拟合点指向指定齿的最大偏差处。本文已得到纠正。

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