Private practice, Gifu, Japan.
Postgraduate Orthodontic Program, Arizona School of Dentistry & Oral Health, A. T. Still University, Mesa, Ariz, Graduate School of Dentistry, Kyung Hee University, Seoul, South Korea.
Am J Orthod Dentofacial Orthop. 2021 Aug;160(2):259-265. doi: 10.1016/j.ajodo.2020.04.029. Epub 2021 May 8.
This study aimed to identify the tooth movement patterns relative to various force angulations (FAs) when distalizing the total maxillary dentition.
Long-term orthodontic movement of the maxillary dentition was simulated by accumulating the initial displacement of teeth produced by elastic deflection of the periodontal ligament using a finite element analysis. Distalization forces of 3 N were applied to the archwire between the maxillary canine and first premolar at 5 different FAs (-30°, -15°, 0°, 15°, and 30°) to the occlusal plane.
Maxillary incisors and molars showed lingual and distal tipping at all FAs, respectively. At a force angulation of 30°, almost bodily distalization of the total maxillary dentition occurred, but incisors showed considerable lingual tipping because of the effect of clearance gap (0.003-in, 0.022 × 0.025-in bracket slot, 0.019 × 0.025-in archwire) and elastic deflection of the archwire. Medial displacement of the maxillary anterior teeth occurred because of lingual tipping during distalization. The occlusal plane rotated clockwise at all FAs because of extrusion of the maxillary incisors and intrusion of the maxillary second molars, and the amounts decreased as FA increased.
Tooth movement patterns during distalization of the total maxillary dentition were recognized. With an understanding of the mechanics, a proper treatment plan can be established.
本研究旨在确定远中移动上颌总牙列时,不同力角度(FA)相关的牙齿移动模式。
通过使用有限元分析累积牙周韧带弹性偏置产生的牙齿初始位移来模拟上颌牙齿的长期正畸运动。在 5 个不同 FA(-30°、-15°、0°、15°和 30°)向咬合平面施加 3 N 的远移力,作用于上颌尖牙和第一前磨牙之间的弓丝上。
上颌切牙和磨牙在所有 FA 下均表现为舌倾和远倾。在力角度为 30°时,总上颌牙列几乎发生整体远中移动,但由于间隙(0.003 英寸,0.022×0.025 英寸托槽槽,0.019×0.025 英寸弓丝)和弓丝的弹性偏置的影响,切牙表现出相当大的舌倾。上颌前牙由于远中倾斜而发生内侧移位。由于上颌切牙的外展和上颌第二磨牙的内收,在所有 FA 下,牙合平面均顺时针旋转,并且随着 FA 的增加,其旋转量减少。
识别了上颌总牙列远移时的牙齿移动模式。通过了解力学原理,可以制定适当的治疗计划。