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一种用于单节段上颌正颌手术重建最终牙合关系的自动方法。

An Automatic Approach to Reestablish Final Dental Occlusion for 1-Piece Maxillary Orthognathic Surgery.

作者信息

Deng Han, Yuan Peng, Wong Sonny, Gateno Jaime, Garrett Fred A, Ellis Randy K, English Jeryl D, Jacob Helder B, Kim Daeseung, Xia James J

机构信息

Department of Oral and Maxillofacial Surgery, Houston Methodist Research Institute, TX.

Department of Orthodontics, University of Texas Houston Health Science Center Dentistry School, TX.

出版信息

Med Image Comput Comput Assist Interv. 2019 Oct;11768:345-353. doi: 10.1007/978-3-030-32254-0_39. Epub 2019 Oct 10.

Abstract

Accurately establishing a desired final dental occlusion of the upper and lower teeth is a critical step in orthognathic surgical planning. Traditionally, the final occlusion is established by hand-articulating the stone dental models. However, this process is inappropriate to digitally plan the orthognathic surgery using computer-aided surgical simulation. To date, there is no effective method of digitally establishing final occlusion. We propose a 3-stage approach to digitally and automatically establish a desired final dental occlusion for 1-piece maxillary orthognathic surgery, including: 1) to automatically extract points of interest and four key teeth landmarks from the occlusal surfaces; 2) to align the upper and lower teeth to a clinically desired Midline-Canine-Molar relationship by minimization of sum of distances between them; and 3) to finely align the upper and lower teeth to a maximum contact with the constraints of collision and clinical criteria. The proposed method was evaluated qualitatively and quantitatively and proved to be effective and accurate.

摘要

准确确定上下牙齿理想的最终牙合关系是正颌外科手术规划中的关键步骤。传统上,最终牙合关系是通过手工拼接石膏牙模来确定的。然而,这个过程不适用于使用计算机辅助手术模拟进行数字化的正颌手术规划。迄今为止,尚无有效的数字化确定最终牙合关系的方法。我们提出了一种三阶段方法,用于为一体式上颌正颌手术数字化自动建立理想的最终牙合关系,包括:1)从咬合面自动提取感兴趣点和四个关键牙齿标志点;2)通过最小化上下牙齿之间的距离总和,将上下牙齿对齐到临床上期望的中线-尖牙-磨牙关系;3)在碰撞和临床标准的约束下,精细地将上下牙齿对齐到最大接触状态。所提出的方法经过了定性和定量评估,证明是有效且准确的。

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本文引用的文献

1
New approach to establish an object reference frame for dental arch in computer-aided surgical simulation.
Int J Oral Maxillofac Surg. 2017 Sep;46(9):1193-1200. doi: 10.1016/j.ijom.2017.04.012. Epub 2017 May 9.
2
Haptic simulation framework for determining virtual dental occlusion.
Int J Comput Assist Radiol Surg. 2017 Apr;12(4):595-606. doi: 10.1007/s11548-016-1475-3. Epub 2016 Sep 6.
5
In vitro evaluation of new approach to digital dental model articulation.
J Oral Maxillofac Surg. 2012 Apr;70(4):952-62. doi: 10.1016/j.joms.2011.02.109. Epub 2011 Jul 20.
6
Automated digital dental articulation.
Med Image Comput Comput Assist Interv. 2010;13(Pt 3):278-86. doi: 10.1007/978-3-642-15711-0_35.
7
An automatic and robust algorithm of reestablishment of digital dental occlusion.
IEEE Trans Med Imaging. 2010 Sep;29(9):1652-63. doi: 10.1109/TMI.2010.2049526. Epub 2010 Jun 7.
8
Virtual occlusion in planning orthognathic surgical procedures.
Int J Oral Maxillofac Surg. 2010 May;39(5):457-62. doi: 10.1016/j.ijom.2010.02.002. Epub 2010 Mar 11.

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