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Assessment of different techniques for 3D superimposition of serial digital maxillary dental casts on palatal structures

机译:评估digital骨结构上系列数字上颌牙模型的3D叠加技术

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摘要

Serial 3-dimensional dental model superimposition provides a risk-free, detailed evaluation of morphological alterations on a patient’s mouth. Here, we evaluated accuracy and precision of five palatal areas, used for superimposition of maxillary 3D digital dental casts. Sixteen pre- and post-orthodontic treatment dental casts of growing patients (median time lapse: 15.1 months) were superimposed on each palatal area using the iterative closest point algorithm. Area A (medial 2/3 of the third rugae and a small area dorsal to them) was considered the gold standard, due to high anatomical stability. Areas B, C, and D added a distal extension along the midpalatal raphe, an anterior extension to the second rugae, and the remaining palatal surface, respectively. Area E was similar to A, located more posteriorly. Non parametric multivariate models showed minimal or no effect on accuracy and precision by operator, time point, or software settings. However, the choice of superimposition area resulted in statistically significant differences in accuracy and clinically significant differences in detected tooth movement (95% limits of agreement exceeding 1 mm and 3°). Superimposition on area A provided accurate, reproducible, and precise results. Outcomes were comparable for area B, but deteriorated when alternative areas were used.
机译:连续的3维牙科模型叠加可对患者口腔的形态变化进行无风险的详细评估。在这里,我们评估了用于上颌3D数字牙科模型的叠加的五个pa区域的准确性和精确性。使用迭代最近点算法,将16个正畸治疗前和正畸治疗后成长中的患者(中位时间:15.1个月)的铸模叠加在每个pa骨区域上。由于较高的解剖学稳定性,将区域A(第三毛media的2/3内侧和背侧的小面积)视为黄金标准。区域B,C和D分别沿pal中ra向远侧延伸,向第二个皱纹前向延伸,并保留其余pa表面。 E区与A区相似,位于更靠后的位置。非参数多元模型对操作员,时间点或软件设置的准确性和精度影响很小或没有影响。但是,重叠区域的选择在准确性和统计学上在检测到的牙齿移动方面都存在统计学差异(95%的一致性限制超过1mm和3°)。叠加在区域A上可提供准确,可复制和精确的结果。结果与区域B相当,但是当使用替代区域时结果恶化。

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