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Comparative Analysis of Stress in the Periodontal Ligament and Center of Rotation in the Tooth after Orthodontic Treatment Depending on Clear Aligner Thickness—Finite Element Analysis Study

机译:透明对准器厚度 - 有限元分析研究的正畸治疗后牙周韧带中牙韧带应力和旋转中心的比较分析

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摘要

Lately, in orthodontic treatments, the use of transparent aligners for the correction of malocclusions has become prominent owing to their intrinsic advantages such as esthetics, comfort, and minimal maintenance. Attempts at improving upon this technology by varying various parameters to investigate the effects on treatments have been carried out by several researchers. Here, we aimed to investigate the biomechanical and clinical effects of aligner thickness on stress distributions in the periodontal ligament and changes in the tooth’s center of rotation. Dental finite element models comprising the cortical and cancellous bones, gingiva, teeth, and nonlinear viscoelastic periodontal ligaments were constructed, validated, and used together with aligner finite element models of different aligner thicknesses to achieve the goal of this study. The finite element analyses were conducted to simulate the actual orthodontic aligner treatment process for the correction of malocclusions by generating pre-stresses in the aligner and allowing the aligner stresses to relax to induce tooth movement. The results of the analyses showed that orthodontic treatment in lingual inclination and axial rotation with a 0.75 mm-thick aligner resulted in 6% and 0.03% higher principal stresses in the periodontal ligament than the same treatment using a 0.05 mm-thick aligner, respectively. Again, for both aligner thicknesses, the tooth’s center of rotation moved lingually and towards the root direction in lingual inclination, and diagonally from the long axis of the tooth in axial rotation. Taken together, orthodontic treatment for simple malocclusions using transparent aligners of different thicknesses will produce a similar effect on the principal stresses in the periodontal ligament and similar changes in the tooth’s center of rotation, as well as sufficient tooth movement. These findings provide orthodontists and researchers clinical and biomechanical evidence about the effect of transparent aligner thickness selection and its effect on orthodontic treatment.
机译:最近,在正畸治疗中,由于其内在的优点如美学,舒适性和最小的维护,因此在正畸治疗中,使用透明对准器进行校正已经突出。通过改变各种参数来改善这种技术来调查治疗的效果已经进行了几个研究人员。在这里,我们旨在研究对准器厚度对牙周韧带中应力分布的生物力学和临床影响,以及齿旋转中心的变化。构建,验证,验证,验证,验证,验证,用不同对准器厚度的对准器有限元模型构建,验证,牙齿有限元模型,验证,并与对准器有限元模型一起使用。进行有限元分析以模拟用于通过在对准器中产生预应力并允许对准器应力放松以诱导牙齿运动来模拟麦片平流的实际正畸对准器处理过程。分析结果表明,在牙齿倾斜和轴向旋转中,具有0.75mm厚的对准器的正畸治疗导致牙周韧带中的6%和0.03%的主应力分别比使用0.05mm厚的对准器的相同的处理。同样,对于对准器厚度,齿的旋转中心在舌倾斜中朝向根部和朝向根方向移动,并且沿轴向旋转地从齿的长轴对角线。使用不同厚度的透明对准器的简单侵蚀器一起服用,使用不同厚度的透明对准器将对牙周韧带中的主要应力和牙齿旋转中心的类似变化产生类似的效果,以及足够的牙齿运动。这些调查结果提供了矫正者和研究人员关于透明对准器厚度选择的影响及其对正畸治疗的影响的临床和生物力学证据。

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