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使用个体化钛板在多个方向和位置进行上颌前牵引效果的三维有限元分析。

Three-dimensional finite element analysis on the effects of maxillary protraction with an individual titanium plate at multiple directions and locations.

作者信息

Wang Fan, Chang Qiao, Liang Shuran, Bai Yuxing

机构信息

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

出版信息

Korean J Orthod. 2024 Mar 25;54(2):108-116. doi: 10.4041/kjod23.217. Epub 2024 Feb 14.

Abstract

OBJECTIVE

: A three-dimensional-printed individual titanium plate was applied for maxillary protraction to eliminate side effects and obtain the maximum skeletal effect. This study aimed to explore the stress distribution characteristics of sutures during maxillary protraction using individual titanium plates in various directions and locations.

METHODS

: A protraction force of 500 g per side was applied at forward and downward angles between 0° and 60° with respect to the Frankfort horizontal plane, after which the titanium plate was moved 2 and 4 mm upward and downward, respectively. Changes in sutures with multiple protraction directions and various miniplate heights were quantified to analyze their impact on the maxillofacial bone.

RESULTS

: Protraction angle of 0-30° with respect to the Frankfort horizontal plane exhibited a tendency for counterclockwise rotation in the maxilla. At a 40° protraction angle, translational motion was observed in the maxilla, whereas protraction angles of 50-60° tended to induce clockwise rotation in the maxilla. Enhanced protraction efficiency at the lower edge of the pyriform aperture was associated with increased height of individual titanium plates.

CONCLUSIONS

: Various protraction directions are suitable for patients with different types of vertical bone surfaces. Furthermore, when the titanium plate was positioned lower, the protraction force exhibited an increase.

摘要

目的

应用三维打印个体化钛板进行上颌骨前牵引,以消除副作用并获得最大骨骼效应。本研究旨在探讨使用个体化钛板在不同方向和位置进行上颌骨前牵引时缝合线的应力分布特征。

方法

在相对于法兰克福水平面0°至60°的向前和向下角度施加每侧500g的牵引力量,之后将钛板分别向上和向下移动2mm和4mm。对多种牵引方向和不同微型钛板高度下缝合线的变化进行量化,以分析其对上颌面部骨骼的影响。

结果

相对于法兰克福水平面0°至30°的牵引角度,上颌骨呈现逆时针旋转趋势。在40°牵引角度时,上颌骨出现平移运动,而50°至60°的牵引角度则倾向于在上颌骨中诱导顺时针旋转。梨状孔下缘牵引效率的提高与个体化钛板高度的增加相关。

结论

不同的牵引方向适用于不同类型垂直骨面的患者。此外,当钛板位置较低时,牵引力量会增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa73/10973726/0cab5b50d8c7/kjod-54-2-108-f1.jpg

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[Three-dimensional printed miniplate used for maxillary protraction].
Zhonghua Kou Qiang Yi Xue Za Zhi. 2017 Dec 9;52(12):753-755. doi: 10.3760/cma.j.issn.1002-0098.2017.12.008.

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