Effect of trimming line design and edge extension of orthodontic aligners on force transmission: A 3D finite element study.

Tarek M. Elshazly, D. Salvatori, Hanaa Elattar, C. Bourauel, L. Keilig
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Abstract

OBJECTIVES To investigate in a numerical study the effect of the geometry and the extension of orthodontic aligner edges and the aligner thickness on force transmission to upper right central incisor tooth (Tooth 11). METHODS A three-dimensional (3D) digital model, obtained from a 3D data set of a complete dentulous maxilla, was imported into 3-matic software. Aligners with four different trimming line designs (scalloped, straight, scalloped extended, straight extended) were designed, each with four different thicknesses (0.3, 0.4, 0.5, and 0.6 mm). The models were exported to a finite element (FE) software (Marc/Mentat). A facial 0.2 mm bodily malposition of tooth 11 was simulated. RESULTS The maximum resultant force was in the range of (7.5 - 55.2) N. The straight trimming designs had higher resultant force than the scalloped designs. The resultant force increases with increasing the edge extension of the aligner. The normal contact forces were unevenly distributed over the entire surface and were concentrated in six areas: Incisal, Mesio-Incisal, Disto-Incisal, Middle, Mesio-Cervical, and Disto-Cervical. The resultant force increases super linearly with increasing thickness. CONCLUSIONS The design of the trimming line, the edge extension, and the thickness of the aligner affect significantly the magnitude of the resultant force and the distribution of normal contact force. The straight extended trimming design exhibited better force distribution that may favor a bodily tooth movement. CLINICAL RELEVANCE A straight extended trimming design of an orthodontic aligner may improve the clinical outcomes. In addition, the manufacturing procedures of the straight design are much simpler compared to the scalloped design.
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正畸矫直器修整线设计及边缘延伸对力传递的影响:三维有限元研究。
目的通过数值研究正畸矫正器边缘的几何形状和延伸以及矫正器厚度对右上中切牙(牙11)力传递的影响。方法将完整上颌骨三维数据集的三维数字模型导入3-matic软件中。设计了四种不同修整线设计(扇形、直形、扇形加长、直形加长)的矫直器,每种矫直器有四种不同的厚度(0.3、0.4、0.5和0.6 mm)。模型导出到有限元软件(Marc/Mentat)中。模拟11号牙面部0.2 mm的身体错位。结果最大合力范围为(7.5 ~ 55.2)n,直线修剪设计的合力高于扇形设计。合力随着对准器边缘延伸的增加而增加。法向接触力在整个表面上分布不均匀,主要集中在6个区域:切牙、中牙-切牙、下牙-切牙、中牙-颈、下牙-颈。随着厚度的增加,合力呈超线性增长。结论矫直线的设计、矫直器边缘的延伸、矫直器的厚度对矫直器的合力大小和法向接触力的分布有显著影响。直线延伸修整设计表现出更好的力分布,可能有利于身体的牙齿运动。临床意义直线型延长修整设计的正畸矫正器可以改善临床效果。此外,与扇形设计相比,直线设计的制造程序要简单得多。
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