Laohachaiaroon Pratchawin, Samruajbenjakun Bancha, Chaichanasiri Ekachai
Orthodontic Section, Department of Preventive Dentistry, Faculty of Dentistry, Prince of Songkla University, Hat Yai, Songkhla 90110, Thailand.
Department of Mechanical Engineering, Faculty of Engineering, Mahidol University, Phuttamonthon, Nakhon Pathom 73170, Thailand.
Dent J (Basel). 2022 Jun 20;10(6):114. doi: 10.3390/dj10060114.
A clear aligner is an esthetic and more comfortable option for patients who need orthodontic treatment. However, some types of tooth movement, such as extrusion, are difficult with this tool. Therefore, composite attachments have been suggested to improve tooth movement. This study aims to evaluate the initial displacement and stress distribution during upper central incisor extrusion using the conventional composite attachments. Maxillary models with the upper teeth, clear aligners, and composite attachments placed on the labial surface of the upper right central incisor were constructed. Four models were created to simulate upper central incisor extrusion: (1) without any composite attachment; (2) rectangular beveled attachment; (3) ellipsoid attachment; and (4) horizontal rectangular attachment. Clear aligners were designed to perform upper central incisor extrusion. The constructed models were analyzed using the finite element method. Initial displacement and stress distribution were analyzed. Output analysis found that the upper right central incisor in the model with a horizontal rectangular attachment had the greatest extrusive movement, followed by the model with ellipsoid attachment and the model with beveled attachment. Maximum compressive stress was seen at the cervical region of the composite attachment. Composite attachments including horizontal rectangular attachment, ellipsoid attachment, and rectangular beveled attachment can be used to perform upper central incisor extrusion.
对于需要正畸治疗的患者来说,透明矫治器是一种美观且更舒适的选择。然而,使用这种工具进行某些类型的牙齿移动,如牙齿伸长,是困难的。因此,有人建议使用复合附件来改善牙齿移动。本研究旨在评估使用传统复合附件进行上颌中切牙伸长时的初始位移和应力分布。构建了带有上牙、透明矫治器以及放置在上颌右中切牙唇面的复合附件的上颌模型。创建了四个模型来模拟上颌中切牙伸长:(1)不使用任何复合附件;(2)矩形斜面附件;(3)椭圆形附件;(4)水平矩形附件。设计透明矫治器以实现上颌中切牙伸长。使用有限元方法对构建的模型进行分析。分析初始位移和应力分布。输出分析发现,带有水平矩形附件的模型中的右上颌中切牙有最大的伸长移动,其次是带有椭圆形附件的模型和带有斜面附件的模型。在复合附件的颈部区域观察到最大压应力。包括水平矩形附件、椭圆形附件和矩形斜面附件在内的复合附件可用于进行上颌中切牙伸长。