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Computer Aided Engineering of Auxiliary Elements for Enhanced Orthodontic Appliances

机译:增强矫正器具的辅助元件计算机辅助元件

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Orthodontic treatments based on removable thermoplastic aligners are becoming quite common in clinical practice. However, there is no technical literature explaining how the loads are transferred from the thermoformed aligner to the patient dentition. Moreover, the role of auxiliary elements used in combination with the aligner, such as attachments and divots, still needs to be thoroughly explained. This paper is focused on the development of a Finite Element (FE) model to be used in the design process of shape attributes of orthodontic aligners. Geometrical models of a maxillary dental arch, including crown and root shapes, were created by combining optical scanning and Cone Beam Computed Tomography (CBCT). Finite Element Analysis (FEA) was used to compare five different aligner's configurations for the same tooth orthodontic tipping movement (rotation around the tooth's center of resistance). The different scenarios were analyzed by comparing the moment along the mesio-distal direction of the tooth and the resulting moment-to-force ratio (M:F) delivered to the tooth on the plane of interest. Results evidenced the influence of the aligner's configuration on the effectiveness of the planned orthodontic movement.
机译:基于可移除的热塑性对准器的正畸治疗在临床实践中变得非常常见。然而,没有技术文献解释了如何将负载从热成型对准器转移到患者牙列。此外,辅助元件与对准器组合使用的辅助元件的作用仍然需要彻底解释。本文集中于开发有限元(FE)模型,用于在正畸对准器的形状属性设计过程中使用。通过组合光学扫描和锥形光束计算机断层扫描(CBCT)来创建上颌牙齿拱的几何模型,包括冠部和根形状。有限元分析(FEA)用于比较五种不同的对准器的配置,用于相同的牙齿正畸倾翻运动(齿围绕齿的抵抗中心)。通过比较沿着牙齿的偏离方向的时刻和所得到的力矩 - 力比(M:F)在感兴趣的平面上递送到牙齿上的不同情景来分析不同的场景。结果证明了对准器配置对计划正畸运动的有效性的影响。

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