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使用新型生物力学力-扭矩分析系统的体外研究:传统正畸保持器与CAD/CAM固定正畸保持器的比较

In Vitro Investigation Using a New Biomechanical Force-Torque Analysis System: Comparison of Conventional and CAD/CAM-Fixed Orthodontic Retainers.

作者信息

Thaden Francesca, Hötzel Linus, Sabbagh Hisham, Mertmann Matthias, Wichelhaus Andrea

机构信息

Department of Orthodontics and Dentofacial Orthopedics, LMU University Hospital, LMU Munich, Goethestrasse 70, 80336 Munich, Germany.

出版信息

Materials (Basel). 2024 Oct 8;17(19):4916. doi: 10.3390/ma17194916.

Abstract

(1) Background: After more than a decade since their first description, Inadvertent Tooth Movements (ITMs) remain an adverse effect of orthodontic retainers without a clear etiology. To further investigate the link between ITMs and the mechanical properties of different retainers, the response upon vertical loading was compared in three retainer types (two stainless steel and one nickel-titanium). The influence of different reference teeth was also considered. (2) Methods: Three retainers (R1, R2, R3) were tested in a newly developed biomechanical analysis system (FRANS). They were bonded to 3D-printed models of the lower anterior jaw and vertically displaced up to 0.3 mm. Developing forces and moments were recorded at the center of force. (3) Results: The vertical displacement caused vertical forces (Fz) and labiolingual moments (My) to arise. These were highest in the lateral incisors (up to 2.35 ± 0.59 N and 9.27 ± 5.86 Nmm for R1; 1.69 ± 1.06 N and 7.42 ± 2.65 Nmm for R2; 3.28 ± 1.73 N and 15.91 ± 9.71 Nmm for R3) for all analyzed retainers and with the R3 retainer for all analyzed reference teeth, while the lowest Fz and My values were recorded with the R1 retainer. (4) Conclusions: Displacements of 0.2 mm and larger provided forces and moments which could be sufficient to cause unwanted torque movements, such as ITMs, in all analyzed retainers. Clinicians must be mindful of these risks and perform post-treatment checkups on patients with retainers of all materials.

摘要

(1) 背景:自首次被描述以来,经过十多年,意外牙移动(ITMs)仍然是正畸保持器的一种不良反应,其病因尚不明确。为了进一步研究ITMs与不同保持器力学性能之间的联系,比较了三种保持器类型(两种不锈钢材质和一种镍钛材质)在垂直加载时的反应。还考虑了不同参照牙的影响。(2) 方法:在新开发的生物力学分析系统(FRANS)中对三种保持器(R1、R2、R3)进行测试。将它们粘结到下颌前牙的3D打印模型上,并垂直位移至0.3毫米。在力的中心记录产生的力和力矩。(3) 结果:垂直位移导致垂直力(Fz)和唇舌向力矩(My)产生。对于所有分析的保持器以及所有分析的参照牙使用R3保持器时,这些力和力矩在侧切牙处最高(R1分别高达2.35±0.59牛和9.27±5.86牛毫米;R2分别为1.69±1.06牛和7.42±2.65牛毫米;R3分别为3.28±1.73牛和15.91±9.71牛毫米),而使用R1保持器时记录到的Fz和My值最低。(4) 结论:0.2毫米及以上的位移产生的力和力矩可能足以在所有分析的保持器中引起不必要的扭矩移动,如ITMs。临床医生必须注意这些风险,并对使用各种材料保持器的患者进行治疗后检查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b47/11477892/a6ed7b59a76b/materials-17-04916-g001.jpg

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