Li Yanfeng, Lv Yuan, Lu Yongjin, Zeng Pan, Zeng Xianglong, Guo Xiaoqian, Han Weili
Department of Stomatology, First Affiliated Hospital of Peoples Liberation Army General Hospital Beijing, China.
Master's Training Site, First Affiliated Hospital of Peoples Liberation Army General Hospital, Liaoning Medical Universiy Liaoning, China.
Int J Clin Exp Med. 2015 Jul 15;8(7):10687-95. eCollection 2015.
Tooth distalization is an effective approach for mandibular prognathism. Current distalization devices are bulky and clinically complicated. Here, we designed a novel molar distalization device by using a sliding rod and a microscrew and performed a mechanical analysis and finite element model (FEM) analysis of force distribution and displacement of the upper canine, first and second premolar and first molar. A 2D FEM was constructed using the Beam3 element and a 3D FEM was constructed of the mandibular teeth, the periodontal membrane, and the alveolar bones using the UG software. The upper first molar was divided into 12 points on the dental surface to facilitate stress analysis. Force analysis using the ANSYS WORKBECNH revealed that, both horizontally and vertically, the traction force causing distalization of the first molar decreased when the spring coil moved down the L shaped sliding rod. The 3D FEM force analysis revealed distomedial displacement of the upper first molar when the sliding rod microscrew implantation device caused distalization of the molar. These findings support further exploration for the use of the sliding rod microscrew implants as an anchorage for group distal movement of the teeth of patients with mandibular prognathism.
牙齿远中移动是治疗下颌前突的一种有效方法。目前的远中移动装置体积庞大且临床操作复杂。在此,我们通过使用滑杆和微螺钉设计了一种新型磨牙远中移动装置,并对上颌尖牙、第一和第二前磨牙以及第一磨牙的力分布和位移进行了力学分析和有限元模型(FEM)分析。使用Beam3单元构建二维有限元模型,并使用UG软件构建包括下颌牙齿、牙周膜和牙槽骨的三维有限元模型。在上颌第一磨牙的牙面上划分12个点以利于应力分析。使用ANSYS WORKBENCH进行的力分析表明,当弹簧圈沿L形滑杆向下移动时,导致第一磨牙远中移动的牵引力在水平和垂直方向上均减小。三维有限元力分析表明,当滑杆微螺钉植入装置使磨牙远中移动时,上颌第一磨牙向远中内侧移位。这些发现支持进一步探索使用滑杆微螺钉植入物作为下颌前突患者牙齿整体远中移动的支抗。