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[随着右上中切牙移动距离增加及矫治器厚度增加,对其上施加的正畸力的测量]

[Measurement of orthodontic forces exerted on the upper right central incisor with the increase of the distance of tooth movement and thickness of the aligner].

作者信息

Ren Chaochao, Li Xiaowei, Wang Zheyao, Wang Hongmei, Bai Yuxing

机构信息

Department of Orthodontics, Capital Medical University School of Stomatology, Beijing 100050, China.

Department of Orthodontics, Capital Medical University School of Stomatology, Beijing 100050, China. Email:

出版信息

Zhonghua Kou Qiang Yi Xue Za Zhi. 2014 Mar;49(3):177-9.

Abstract

OBJECTIVE

To measure the orthodontic forces exerted on the upper right central incisor with the increase of the distance of tooth movement and the thickness of the aligner.

METHODS

The labial movement of upper right central incisor at various distances (0.3, 0.6, 0.9, 1.2, 1.5, 1.8 mm) was designed and the stereolithography model (2 times bigger than the original model) was created with 3-D scanning and tomography output. These models were used to fabricate the aligners with different thicknesses (0.8, 1.0, 1.5 and 2.0 mm) of the thermoplastic materials (6 samples for various distances of tooth movement and thicknesses). Orthodontic forces exerted on the upper right central incisor were measured with the micro-stress sensor measurement system.

RESULTS

The orthodontic forces increased with the increase of the thickness of the aligner at the same distance of tooth movement (P < 0.05). The orthodontic force was (1.237 ± 0.082), (1.543 ± 0.059), (3.602 ± 0.102), (6.734 ± 0.063) N when the labial movement of upper right central incisor was 0.3 mm with the aligner of 0.8, 1.0, 1.5, 2.0 mm. The orthodontic forces also increased with the increase of the distance of the tooth movement at the same thickness of the aligner(P < 0.05). The orthodontic force of the aligner of 0.8 mm were (1.354 ± 0.039), (1.288 ± 0.037), (1.479 ± 0.031), (1.799 ± 0.039) N when the upper right central tooth labial movement at 0.6, 0.9, 1.2, 1.5 mm.

CONCLUSIONS

The orthodontic forces increased with the increase of the distance of tooth movement and the thickness of the aligner.

摘要

目的

测量随着牙齿移动距离和矫治器厚度增加,右上中切牙所受的正畸力。

方法

设计右上中切牙在不同移动距离(0.3、0.6、0.9、1.2、1.5、1.8毫米)下的唇向移动,并通过三维扫描和断层扫描输出创建立体光刻模型(比原始模型大2倍)。这些模型用于制作不同厚度(0.8、1.0、1.5和2.0毫米)的热塑性材料矫治器(针对不同牙齿移动距离和厚度制作6个样本)。使用微应力传感器测量系统测量右上中切牙所受的正畸力。

结果

在相同牙齿移动距离下,正畸力随矫治器厚度增加而增大(P<0.05)。当右上中切牙唇向移动0.3毫米,矫治器厚度分别为0.8、1.0、1.5、2.0毫米时,正畸力分别为(1.237±0.082)、(1.543±0.059)、(3.602±0.102)、(6.734±0.063)牛顿。在相同矫治器厚度下,正畸力也随牙齿移动距离增加而增大(P< 0.05)。当右上中切牙唇向移动距离为0.6、0.9、1.2、1.5毫米时,0.8毫米厚矫治器的正畸力分别为(1.354±0.039)、(1.288±0.037)、(1.479±0.031)、(1.799±0.039)牛顿。

结论

正畸力随牙齿移动距离和矫治器厚度的增加而增大。

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