首页> 外文期刊>Indian Journal of Dental Research >Effect of increasing the vertical intrusive force to obtain torque control in lingual orthodontics: A three-dimensional finite element method study
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Effect of increasing the vertical intrusive force to obtain torque control in lingual orthodontics: A three-dimensional finite element method study

机译:正畸时增加垂直切入力以获得扭矩控制的效果:三维有限元方法研究

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Context: Biomechanical differences between lingual and labial orthodontics (LiO and LaO). Aims: To investigate the effects of intrusive forces in lingual technique during retraction treatment mechanics. Settings and Design: Intrusive forces act differently in both techniques because of the different location of force vectors in relation to the center of resistance. Increasing the vertical intrusive force is one of the methods routinely used to prevent the uncontrolled tipping and obtain bodily tooth movement in LaO. However, its effects in lingual technique need to be investigated to derive at an optimal treatment mechanics. Subjects and Methods: Finite element method which has been successfully used to simulate tooth movement and optimize orthodontic mechanics effectively was used in this study. An accurate model of the upper central and lateral incisors with the surrounding structures was developed, and the “ANSYS” version 7.0 software was used for analysis. Results: Intrusive forces as high as 3.6N was required to obtain translation in LiO that too in an undesirable direction. Efforts to obtain torque control by increasing the intrusive force only would not be successful. Conclusion: Forces that produce a translation in LaO tends to produce uncontrolled tipping in lingual technique. To obtain adequate torque control in lingual technique, a combination of the reduction in horizontal retraction forces, increased lingual root torque application, and increase in vertical intrusive forces is desirable.
机译:背景:口腔正畸(LiO和LaO)之间的生物力学差异。目的:探讨在介入治疗力学过程中,插入力在舌技术中的作用。设置和设计:由于力矢量相对于阻力中心的位置不同,因此两种方法中的侵入力作用不同。增大垂直切入力是防止LaO中不受控制的倾翻并获得人体牙齿运动的常规方法之一。但是,需要研究其在语言技术中的作用,才能得出最佳的治疗机制。研究对象和方法:本研究使用了有限元方法,该方法已成功地用于模拟牙齿运动并有效地优化了正畸力学。建立了上中切牙和上切牙与周围结构的精确模型,并使用“ ANSYS” 7.0版软件进行了分析。结果:要在LiO中获得平移,还需要高达3.6N的侵入力,而平移也是不希望的。仅通过增加侵入力来获得转矩控制的努力将不会成功。结论:在LaO中产生翻译的力倾向于在语言技巧中产生不受控制的倾斜。为了在舌头技术中获得足够的扭矩控制,需要水平收缩力的减小,舌根扭矩施加的增加和垂直侵入力的增加的组合。

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