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新型超薄聚对苯二甲酸乙二醇酯-二醇改性共聚酯(PET-G)矫治器在上颌中切牙唇腭向身体移动过程中产生的力和力矩:一项体外研究。

Forces and moments delivered by novel, thinner PET-G aligners during labiopalatal bodily movement of a maxillary central incisor: An in vitro study.

作者信息

Elkholy Fayez, Schmidt Falko, Jäger Rudolf, Lapatki Bernd G

出版信息

Angle Orthod. 2016 Nov;86(6):883-890. doi: 10.2319/011316-37R.1. Epub 2016 May 25.

Abstract

OBJECTIVE

To evaluate whether overloading of teeth can be avoided by utilizing aligners with reduced thicknesses of 0.4 mm or 0.3 mm.

MATERIALS AND METHODS

The experimental setup included an acrylic maxillary jaw model with tooth 11 separated and fixed via a 3-D force-moment transducer to a hexapod for experimental movement. Aligners tested were fabricated on duplicate stone models using commercially available polyethylene terephthalate glycol (PET-G) foils with thicknesses between 0.5 and 0.75 mm, and novel 0.4-mm- and 0.3-mm-thick foils. With the test aligner seated, 11 was bodily displaced in a labiopalatal direction in the range of ±0.25 mm while all six force-and-moment components exerted on this tooth were registered.

RESULTS

With the thinnest commercially available 0.5-mm aligner, median forces of -7.89 N and 8.37 N were measured for the maximum 0.25-mm movement of 11 in a labial and palatal direction, respectively. In comparison, force values were 35% and 71% lower for the novel aligners with a thickness of 0.4 mm and 0.3 mm, respectively.

CONCLUSIONS

Novel "leveling" aligners with reduced thickness may reduce overloading of individual teeth during aligner therapy. Due to form instability of 0.3-mm aligners, we suggest a novel sequence of 0.4-0.5-0.75 mm for aligner systems using several foil thicknesses for load graduation within single setup steps. This would combine low stiffness of the initial aligner and relatively constant load increases throughout the treatment.

摘要

目的

评估使用厚度为0.4毫米或0.3毫米的矫治器能否避免牙齿过载。

材料与方法

实验装置包括一个丙烯酸树脂上颌模型,其中11号牙被分离,并通过三维力-力矩传感器固定在一个六足平台上以便进行实验性移动。测试的矫治器是在复制的石膏模型上制作的,使用的是市售的聚对苯二甲酸乙二醇酯(PET-G)箔片,厚度在0.5至0.75毫米之间,以及新型的0.4毫米和0.3毫米厚的箔片。在佩戴测试矫治器的情况下,11号牙在唇腭向移动±0.25毫米范围内,同时记录施加在该牙齿上的所有六个力和力矩分量。

结果

对于市售最薄的0.5毫米矫治器,在11号牙唇向和腭向最大移动0.25毫米时,测得的中位力分别为-7.89牛和8.37牛。相比之下,厚度为0.4毫米和0.3毫米的新型矫治器的力值分别降低了35%和71%。

结论

厚度减小的新型“整平”矫治器可能会减少矫治器治疗期间单个牙齿的过载情况。由于0.3毫米矫治器的形态稳定性较差,我们建议对于在单个设置步骤中使用多种箔片厚度进行负荷分级的矫治器系统,采用0.4 - 0.5 - 0.75毫米的新型序列。这将结合初始矫治器的低刚度以及整个治疗过程中相对恒定的负荷增加。

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