Tuntiwong Kuson, Hsu Jui-Ting, Yang Shih-Guang, Yu Jian-Hong, Huang Heng-Li
School of Dentistry, China Medical University, Taichung 40402, Taiwan.
Department of Bioinformatics and Medical Engineering, Asia University, Taichung 41354, Taiwan.
Appl Bionics Biomech. 2021 Jul 12;2021:9952392. doi: 10.1155/2021/9952392. eCollection 2021.
This study evaluated the biomechanical effects of a metallic orthodontic mini-implant (OMI) covered with various types of angled revolving cap on the peri-OMI bone and the canine periodontal ligament (PDL) by finite element (FE) analyses.
Three-dimensional FE models included comprised cortical bone and cancellous bone of the maxilla, and the OMIs were created. The forces (0.98 N) pulled in both the canine hook and the revolving cap, pulling towards each other in both directions as loading conditions. The upper surface of the maxilla was fixed as a boundary condition.
The bone stresses were increasing in the models by using OMI covered with a revolving cap as compared with that in the conventional model (in which only the OMI was placed). However, no obvious differences in bone stresses were observed among the models with various types of angled revolving cap. The minimum principal strain in the canine PDL was highest for condition 180T, followed by condition 180L. However, the maximum differences in the values between each experimental model and the conventional model were around 5%.
This study showed no obvious effects in decreasing or increasing stress/strain in bone and PDL by using various types of angled revolving cap covered metallic mini-implant in orthodontic treatment of canine retraction.
本研究通过有限元分析评估了覆盖不同类型成角旋转帽的金属正畸微型种植体(OMI)对OMI周围骨组织和犬牙周膜(PDL)的生物力学影响。
三维有限元模型包括上颌骨的皮质骨和松质骨,并创建了OMI。以在犬钩和旋转帽中均施加0.98 N的力、两个方向相互牵拉作为加载条件。上颌骨上表面固定作为边界条件。
与传统模型(仅植入OMI)相比,使用覆盖旋转帽的OMI的模型中骨应力增加。然而,不同类型成角旋转帽的模型之间未观察到骨应力的明显差异。犬PDL中的最小主应变在180T条件下最高,其次是180L条件。然而,每个实验模型与传统模型之间的值的最大差异约为5%。
本研究表明,在犬牙内收正畸治疗中,使用覆盖不同类型成角旋转帽的金属微型种植体对骨组织和PDL中的应力/应变增减无明显影响。