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评估在腭结构上对连续数字化上颌牙列模型进行三维叠加的不同技术。

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

机构信息

Department of Orthodontics and Dentofacial Orthopedics, Friedrich Schiller University of Jena, An der alten Post 4, 07743, Jena, Germany.

Department of Orthodontics and Dentofacial Orthopedics, University of Bern, Freiburgstrasse 7, CH-3010, Bern, Switzerland.

出版信息

Sci Rep. 2017 Jul 19;7(1):5838. doi: 10.1038/s41598-017-06013-5.

Abstract

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.

摘要

三维数字化牙颌模型的连续重叠可对患者口腔的形态改变进行安全、详细的评估。本研究评估了用于上颌三维数字牙颌模型重叠的五个腭部区域的准确性和精密度。对 16 例生长发育期正畸治疗前后的牙颌模型(中位时间间隔:15.1 个月)使用迭代最近点算法在每个腭部区域进行重叠。由于解剖结构稳定性高,区域 A(第三皱襞的内 2/3 以及其背侧的一小部分区域)被认为是金标准。区域 B、C 和 D 分别沿中腭嵴增加了一个远中延伸、第二皱襞的前延伸以及剩余的腭部表面。区域 E 与 A 相似,但位于更靠后的位置。非参数多变量模型显示,操作者、时间点或软件设置对准确性和精密度的影响最小或没有影响。然而,重叠区域的选择导致准确性和检测到的牙齿移动(95%一致性界限超过 1mm 和 3°)存在统计学显著差异和临床显著差异。区域 A 的重叠提供了准确、可重复和精确的结果。区域 B 的结果具有可比性,但使用替代区域时会恶化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54a1/5517608/9f43c128fce3/41598_2017_6013_Fig1_HTML.jpg

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