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使用两个弯曲悬臂对额部节段进行对称和非对称加载的效果:一项体外研究。

The Effect of Symmetric and Asymmetric Loading of Frontal Segment with Two Curved Cantilevers: An In Vitro Study.

作者信息

Bilinska Malgorzata, Dalstra Michel

机构信息

Section of Orthodontics, Department of Dentistry and Oral Health, Aarhus University, Vennelyst Boulevard 9, 8000 Aarhus, Denmark.

出版信息

Dent J (Basel). 2022 Mar 29;10(4):52. doi: 10.3390/dj10040052.

Abstract

Cantilevers generate statically determined force systems. The frontal segment loading with symmetric and asymmetric cantilevers in a three-piece intrusion base arch can be used to correct midline asymmetry. Three types of 0.017″ × 0.025″ beta-titanium cantilevers: tip-back (TB), deep curve (DC), utility arch (UA) were tested on typodonts simulating intrusion of the maxillary anterior segment. Typodonts with symmetric and asymmetric cantilevers were scanned with intraoral scanner (3Shape, TRIOS, Copenhagen, Denmark) before (T0) and after (T1) the experiment, scans were superimposed using Mimics software (Materialise, Leuven, Belgium). Data were analysed with qualitative analysis. All cantilevers generated vertical and horizontal forces. For symmetric design, the DC and TB displayed intrusive force with retrusive component, UA intrusion and protrusion. The asymmetric cantilevers produced transverse displacement of anterior segment. DC created lateral, UA medial force, the anterior segment displacement was consistent with the used configuration. The movement of an anterior segment with TB is smaller compared to DC and UA. Symmetric cantilevers configurations can achieve simultaneous intrusion and retrusion or protrusion of the anterior segment. The asymmetric design with transversal force can clinically aid the correction of midline discrepancies. The effect of the cantilever configuration on delivered force direction was confirmed.

摘要

悬臂梁产生静定的力系。在三件式侵入式基牙弓中使用对称和不对称悬臂梁进行前牙段加载,可用于纠正中线不对称。在模拟上颌前牙段侵入的模型牙上测试了三种类型的0.017″×0.025″β-钛悬臂梁:后倾(TB)、深曲(DC)、通用弓(UA)。在实验前(T0)和实验后(T1),使用口腔内扫描仪(3Shape,TRIOS,丹麦哥本哈根)对上颌有对称和不对称悬臂梁的模型牙进行扫描,扫描图像使用Mimics软件(Materialise,比利时鲁汶)进行叠加。采用定性分析方法对数据进行分析。所有悬臂梁均产生垂直和水平力。对于对称设计,DC和TB表现出具有后缩分量的侵入力、UA的侵入和前突力。不对称悬臂梁使前牙段产生横向位移。DC产生侧向力,UA产生内侧力,前牙段位移与所用构型一致。与DC和UA相比,TB引起的前牙段移动较小。对称悬臂梁构型可实现前牙段的同时侵入和后缩或前突。具有横向力的不对称设计在临床上有助于纠正中线差异。证实了悬臂梁构型对所传递力方向的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10ce/9029401/596b73c8e60c/dentistry-10-00052-g001.jpg

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