Pol Tejas R, Vandekar Meghna, Patil Anuradha, Desai Sanjana, Shetty Vikram, Hazarika Saptarshi
Assistant professor Department of orthodontics, YMT Dental College and Hospital, kharghar, India.
HOD < Professor ,Department of orthodontics, YMT Dental College and Hospital, kharghar.
J Clin Exp Dent. 2018 Jan 1;10(1):e20-e24. doi: 10.4317/jced.54461. eCollection 2018 Jan.
The aim of present study was to investigate the difference of torque control during intrusive force on upper central incisors with normal, under and high torque in lingual and labial orthodontic systems through 3D finite element analysis.
Six 3D models of an upper right central incisor with different torque were designed in Solid Works 2006. Software ANSYS Version 16.0 was used to evaluate intrusive force on upper central incisor model . An intrusive force of 0.15 N was applied to the bracket slot in different torque models and the displacements along a path of nodes in the upper central incisor was assessed.
On application of Intrusive force on under torqued upper central incisor in Labial system produce labial crown movement but in Lingual system caused lingual movement in the apical and incisal parts. The same intrusive force in normal-torqued central incisor led to a palatal movement in apical and labial displacement of incisal edge in Lingual system and a palatal displacement in apical area and a labial movement in the incisal edge in Labial systemin. In overtorqued upper central incisor, the labial crown displacement in Labial system is more than Lingual system.
In labial and lingual system on application of the same forces in upper central incisor with different inclinations showed different responses. The magnitudes of torque Loss during intrusive loads in incisors with normal, under and over-torque were higher in Labial system than Lingual orthodontic appliances. FEM, lingual orthodontics, intrusion, torque control, labial bracket systems.
本研究旨在通过三维有限元分析,探讨在舌侧和唇侧正畸系统中,对上颌中切牙施加侵入力时,正常扭矩、低扭矩和高扭矩情况下扭矩控制的差异。
在SolidWorks 2006中设计了六个具有不同扭矩的右上颌中切牙的三维模型。使用ANSYS 16.0软件评估上颌中切牙模型上的侵入力。在不同扭矩模型的托槽槽沟上施加0.15N的侵入力,并评估上颌中切牙沿节点路径的位移。
在唇侧系统中,对低扭矩上颌中切牙施加侵入力会导致冠唇向移动,但在舌侧系统中会导致根尖和切端部分舌向移动。在舌侧系统中,对正常扭矩的中切牙施加相同的侵入力会导致根尖腭向移动和切端唇向位移,在唇侧系统中会导致根尖区腭向位移和切端唇向移动。在高扭矩的上颌中切牙中,唇侧系统的冠唇向位移大于舌侧系统。
在唇侧和舌侧系统中,对上颌中切牙施加相同力时,不同倾斜度会表现出不同的反应。唇侧正畸矫治器在正常、低扭矩和高扭矩切牙侵入载荷过程中的扭矩损失幅度高于舌侧正畸矫治器。有限元分析、舌侧正畸、侵入、扭矩控制、唇侧托槽系统。