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Effect of material variation on the biomechanical behaviour of orthodontic fixed appliances: a finite element analysis

机译:材料变化对正畸固定器械生物力学行为的影响:有限元分析

摘要

INTRODUCTION Biomechanical analysis of orthodontic tooth movement is complex, as many different tissues and appliance components are involved. The aim of this finite element study was to assess the relative effect of material alteration of the various components of the orthodontic appliance on the biomechanical behaviour of tooth movement. METHODS A three-dimensional finite element solid model was constructed. The model consisted of a canine, a first, and a second premolar, including the surrounding tooth-supporting structures and fixed appliances. The materials of the orthodontic appliances were alternated between: (1) composite resin or resin-modified glass ionomer cement for the adhesive, (2) steel, titanium, ceramic, or plastic for the bracket, and (3) β-titanium or steel for the wire. After vertical activation of the first premolar by 0.5mm in occlusal direction, stress and strain calculations were performed at the periodontal ligament and the orthodontic appliance. RESULTS The finite element analysis indicated that strains developed at the periodontal ligament were mainly influenced by the orthodontic wire (up to +63 per cent), followed by the bracket (up to +44 per cent) and the adhesive (up to +4 per cent). As far as developed stresses at the orthodontic appliance are concerned, wire material had the greatest influence (up to +155 per cent), followed by bracket material (up to +148 per cent) and adhesive material (up to +8 per cent). LIMITATIONS The results of this in silico study need to be validated by in vivo studies before they can be extrapolated to clinical practice. CONCLUSION According to the results of this finite element study, all components of the orthodontic fixed appliance, including wire, bracket, and adhesive, seem to influence, to some extent, the biomechanics of tooth movement.
机译:简介正畸牙齿运动的生物力学分析非常复杂,因为涉及许多不同的组织和矫治器组件。这项有限元研究的目的是评估正畸矫治器各种组件的材料改变对牙齿运动的生物力学行为的相对影响。方法建立三维有限元实体模型。该模型由犬齿,第一和第二前磨牙组成,包括周围的牙齿支撑结构和固定装置。正畸矫治器的材料在以下两种材料之间交替使用:(1)用于粘合剂的复合树脂或树脂改性的玻璃离聚物水泥;(2)用于支架的钢,钛,陶瓷或塑料;以及(3)β-钛或钢用于电线。在咬合方向上垂直激活第一前磨牙0.5mm之后,在牙周膜和正畸矫治器上进行应力和应变计算。结果有限元分析表明,在牙周膜上产生的应变主要受正畸线的影响(最高+ 63%),其次是托槽(最高+ 44%)和粘合剂(最高+ 4%)。分)。就正畸矫治器产生的应力而言,丝线材料的影响最大(最高+ 155%),其次是支架材料(最高+ 148%)和粘合材料(最高+ 8%)。 。局限性该计算机模拟研究的结果需要通过体内研究来验证,然后才能推广到临床实践。结论根据这项有限元研究的结果,正畸固定矫治器的所有组件,包括金属丝,托槽和粘合剂,似乎都在一定程度上影响牙齿运动的生物力学。

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