Key Lab for Biomechanical Engineering of Sichuan Province, Sichuan University, Chengdu, China.
School of Biological Science and Medical Engineering, Beijing Advanced Innovation Centre for Biomedical Engineering, Beihang University, Beijing, China.
Med Biol Eng Comput. 2020 May;58(5):1091-1097. doi: 10.1007/s11517-020-02149-1. Epub 2020 Mar 11.
This study aims to analyse the stress distributions and initial displacements of teeth during the space closing stage through a three-dimensional finite element method. Computed tomography images of a patient were used to reconstruct the detailed teeth and alveolar bone, and brackets with stainless steel archwire were modelled according to the orthodontic prescriptions. The second premolars and first molars were chosen as the anchorages in the model 6-force, with buccal tubes attached to the second molars in the model 6-force-7, and the second molars as additional anchorages in the model 7-force. The results indicated that a movement of lingual lateral inclination occurred on the incisors during the retraction, and the frictional force between the teeth and the archwire significantly reduced the stress on the teeth and periodontal structures. Graphical abstract Malocclusion is one of the most common issue in dentistry with high prevalence and orthodontic treatment need. The extraction of first premolar teeth was normally needed at the beginning of the treatment. And the straight wire appliance together with the sliding mechanics was used for space closure at the end of the treatment. However, side effects like root resorption also found after the surgery. Biomechanically, the stress distributions and initial displacements of teeth during space closing stage might be a crucial factor contributed to those undesirable side effects. And different selections of anchorages might alter the biomechanical environment during the treatment. Thus, the purpose of the current study was to analyse the stress distributions and initial displacements, with the different anchorage selections, of teeth during space closing stage through 3D finite element method.
本研究旨在通过三维有限元法分析牙齿在关闭间隙阶段的应力分布和初始位移。使用患者的计算机断层扫描图像重建详细的牙齿和牙槽骨,并根据正畸处方对带有不锈钢弓丝的托槽进行建模。模型 6-力中选择第二前磨牙和第一磨牙作为锚固体,模型 6-力-7 中在第二磨牙上附加颊管,模型 7-力中第二磨牙作为附加锚固体。结果表明,在收回过程中切牙发生了舌侧倾斜运动,牙齿和弓丝之间的摩擦力显著降低了牙齿和牙周结构的应力。