Department of Dental & Oral Surgery, Lady Hardinge Medical College & Hospital, Connaught Place, 110001 New Delhi, India.
Department of Orthodontics and Dentofacial Orthopedics, K.L.E. Society's Institute of Dental Sciences, Bangalore, Karnataka, India.
Int Orthod. 2021 Jun;19(2):281-290. doi: 10.1016/j.ortho.2021.03.003. Epub 2021 Apr 9.
To assess the influence of changing the size and position of lever arm on transverse and vertical bowing effects during retraction in lingual biomechanics.
A three dimensional 3D finite element method was used to simulate en masse anterior teeth retraction using lingual appliance with sliding mechanics. Two groups were made, 1st group had lever arm mesial to canine while 2nd group had distal to canine. Each group had 4 subgroups with lever arm height varying from 0mm to 12mm. Displacements of the maxillary anterior teeth were noted in each group.
As the Lever Arm Height (LAH) increased in group I, the vertical bowing effect reduced while the transverse bowing increased with respect to canines. In group II, both vertical and transverse bowing effects increased but transverse bowing was less as compared to group I.
Strategic location of the lever arm is required in different clinical situations during en-mass retraction, keeping in mind the location of Centre of Resistance (CRes) as well as the vertical and the transverse bowing effects.
评估在舌侧矫治中,改变力臂的大小和位置对牵引过程中横向和垂直弯曲效应的影响。
使用三维有限元方法模拟使用滑动机制的舌侧矫治器整体前牙内收。将实验组分为两组,第一组的力臂位于尖牙近中,第二组的力臂位于尖牙远中。每组又分为 4 个子组,力臂高度从 0mm 变化到 12mm。记录上颌前牙的位移。
在组 I 中,随着力臂高度(LAH)的增加,相对于尖牙的垂直弯曲效应减小,而横向弯曲效应增加。在组 II 中,垂直和横向弯曲效应均增加,但与组 I 相比,横向弯曲效应较小。
在整体内收过程中,根据不同的临床情况,需要战略性地定位力臂,同时考虑阻力中心(CRes)以及垂直和横向弯曲效应。