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固定正畸保持器的有限元分析

Finite Element Analysis of Fixed Orthodontic Retainers.

作者信息

Hetzler Sebastian, Rues Stefan, Zenthöfer Andreas, Rammelsberg Peter, Lux Christopher J, Roser Christoph J

机构信息

Department of Prosthodontics, University of Heidelberg, Im Neuenheimer Feld 400, 69120 Heidelberg, Germany.

Department of Orthodontics and Dentofacial Orthopedics, University of Heidelberg, Im Neuenheimer Feld 400, 69120 Heidelberg, Germany.

出版信息

Bioengineering (Basel). 2024 Apr 18;11(4):394. doi: 10.3390/bioengineering11040394.

Abstract

The efficacy of retainers is a pivotal concern in orthodontic care. This study examined the biomechanical behaviour of retainers, particularly the influence of retainer stiffness and tooth resilience on force transmission and stress distribution. To do this, a finite element model was created of the lower jaw from the left to the right canine with a retainer attached on the oral side. Three levels of tooth resilience and variable retainer bending stiffness (influenced by retainer type, retainer diameter, and retainer material) were simulated. Applying axial or oblique (45° tilt) loads on a central incisor, the force transmission increased from 2% to 65% with increasing tooth resilience and retainer stiffness. Additionally, a smaller retainer diameter reduced the uniformity of the stress distribution in the bonding interfaces, causing concentrated stress peaks within a small field of the bonding area. An increase in retainer stiffness and in tooth resilience as well as a more oblique load direction all lead to higher overall stress in the adhesive bonding area associated with a higher risk of retainer bonding failure. Therefore, it might be recommended to avoid the use of retainers that are excessively stiff, especially in cases with high tooth resilience.

摘要

保持器的功效是正畸治疗中的一个关键问题。本研究考察了保持器的生物力学行为,特别是保持器刚度和牙齿弹性对力传递和应力分布的影响。为此,创建了一个从左到右尖牙的下颌有限元模型,并在口腔侧附着一个保持器。模拟了三种牙齿弹性水平和可变的保持器弯曲刚度(受保持器类型、保持器直径和保持器材料影响)。在中切牙上施加轴向或倾斜(45°倾斜)载荷时,随着牙齿弹性和保持器刚度的增加,力传递从2%增加到65%。此外,较小的保持器直径会降低粘结界面应力分布的均匀性,在粘结区域的小范围内产生集中应力峰值。保持器刚度、牙齿弹性的增加以及更倾斜的载荷方向都会导致粘结区域的整体应力更高,保持器粘结失败的风险也更高。因此,可能建议避免使用刚度过大的保持器,尤其是在牙齿弹性较高的情况下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/073b/11048068/c4788df135fc/bioengineering-11-00394-g001.jpg

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