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使用有限元分析进行正畸治疗中诱导牙齿整体移动的透明矫治器附件的高效设计

Efficient Design of a Clear Aligner Attachment to Induce Bodily Tooth Movement in Orthodontic Treatment Using Finite Element Analysis.

作者信息

Hong Kyungjae, Kim Won-Hyeon, Eghan-Acquah Emmanuel, Lee Jong-Ho, Lee Bu-Kyu, Kim Bongju

机构信息

Seethrough Tech. Corp., Seoul 06149, Korea.

Department Dentistry, College of Medicine, University of Ulsan, Seoul 05505, Korea.

出版信息

Materials (Basel). 2021 Aug 30;14(17):4926. doi: 10.3390/ma14174926.

Abstract

Clear aligner technology has become the preferred choice of orthodontic treatment for malocclusions for most adult patients due to their esthetic appeal and comfortability. However, limitations exist for aligner technology, such as corrections involving complex force systems. Composite attachments on the tooth surface are intended to enable active control of tooth movements. However, unintended tooth movements still occur. In this study, we present an effective attachment design of an attachment that can efficiently induce tooth movement by comparing and analyzing the movement and rotation of teeth between a general attachment and an overhanging attachment. The 3D finite element modes were constructed from CBCT data and used to analyze the distal displacement of the central incisor using 0.5- and 0.75-mm-thick aligners without an attachment, and with general and overhanging attachments. The results show that the aligner with the overhanging attachment can effectively reduce crown tipping and prevent axial rotation for an intended distal displacement of the central incisor. In all models, an aligner with or without attachments was not capable of preventing the lingual inclination of the tooth.

摘要

由于其美观性和舒适性,隐形矫治技术已成为大多数成年患者错牙合畸形正畸治疗的首选。然而,矫治器技术存在局限性,例如涉及复杂力系统的矫正。牙齿表面的复合附件旨在实现对牙齿移动的主动控制。然而,仍会出现意外的牙齿移动。在本研究中,我们通过比较和分析普通附件与悬垂附件之间牙齿的移动和旋转,提出了一种能够有效诱导牙齿移动的附件的有效设计。从CBCT数据构建3D有限元模型,并用于分析使用0.5毫米和0.75毫米厚的无附件矫治器、普通附件矫治器和悬垂附件矫治器时中切牙的远中位移。结果表明,带有悬垂附件的矫治器能够有效减少牙冠倾斜,并防止中切牙在预期远中位移时发生轴向旋转。在所有模型中,有无附件的矫治器都无法防止牙齿舌倾。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1500/8433704/ec133ce28dba/materials-14-04926-g001.jpg

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