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Evaluation of Lingual Orthodontic appliances

机译:口腔正畸矫治器的评估

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摘要

Due to increasing popularity of lingual orthodontics in recent years, various lingual systems have been developed. In orthodontics Finite Element Method (FEM) has been used to study various types of tooth movement. Although FEM was extensively used for evaluating the biomechanical effects of labial orthodontic forces, research on lingual system is still limited. The purpose of this study is to evaluate the efficacy of two different lingual bracket systems using FEM. FEM of maxilla which included six upper anterior teeth, periodontal ligament has been created. Six upper anterior teeth were digitally arranged in final position using a new computerized method. CAD models of six upper anterior brackets of 7th generation and Lingual matrix have also been created and attached onto the digital model at appropriate heights. Various orthodontic movements were simulated and force applied distal to the canine bracket. Deformation, stress on teeth, bone and periodontal ligament were studied and compared between the two different lingual systems. Deformation was less with lingual matrix brackets than 7th generation brackets when subjected to intrusive, retractive and combined forces. More stresses were generated on the teeth, bone and PDL in lingual matrix brackets than 7th generation brackets when subjected to forces. It was found that tooth movements are more efficient and precise in lingual matrix brackets than prefabricated 7th generation brackets.
机译:由于近年来牙正畸的日益普及,已经开发了各种语言系统。在牙齿矫正中,有限元方法(FEM)已用于研究各种类型的牙齿运动。尽管有限元法被广泛用于评估唇正畸力的生物力学作用,但对舌系统的研究仍然很有限。这项研究的目的是评估使用有限元法的两个不同的舌括号系统的功效。包括六个上前牙,牙周膜的上颌的有限元分析已创建。使用一种新的计算机化方法将六个上前牙以数字方式排列在最终位置。还创建了第7代的六个上前支架和Lingual矩阵的CAD模型,并以适当的高度将其附加到数字模型上。模拟了各种正畸运动并将力施加到犬托的远端。研究并比较了两种不同语言系统之间的变形,牙齿,骨骼和牙周膜上的应力。当受到侵入性,收缩性和联合力作用时,舌矩阵支架的变形小于第七代支架。承受力时,舌骨托槽中牙齿,骨骼和PDL上产生的应力比第七代托槽更多。结果发现,在舌矩阵托槽中,牙齿移动比第七代预制托槽更有效,更精确。

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