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弓丝和曲簧式间隙保持器的臂设计影响其寿命:一项基于患者的有限元研究。

Arm design of band and loop space maintainer affects its longevity: a patient-specific finite element study.

机构信息

Department of Pediatric Dentistry, Faculty of Dentistry, University of Afyonkarahisar Health Science, 03040 Afyonkarahisar, Turkey.

Department of Periodontology, Faculty of Dentistry, University of Afyonkarahisar Health Science, 03040 Afyonkarahisar, Turkey.

出版信息

J Clin Pediatr Dent. 2024 Jan;48(1):171-183. doi: 10.22514/jocpd.2024.019. Epub 2024 Jan 3.

Abstract

Fixed space maintainers (FSMs) are commonly utilized in pediatric dentistry to prevent space loss following premature tooth extraction. Although previous studies have examined the survival rates and causes of FSM failure, the impact of arm design on failure has not been investigated. This study aimed to investigate the tensile and compressive stresses related to FSMs with different arm designs and evaluate the effect of arm designs on FSM failure. Cone beam computed tomography images of a child who experienced premature loss of a primary mandibular left second molar tooth were retrieved from our database, then processed and simulated using the Rhinoceros software. Finite element analysis was performed to evaluate the stresses on four distinct FSM arm designs under simulated chewing forces. The results showed that the straight-arm FSM design exhibited the highest von Mises principal stress, while FSMs with curved arms and surrounding primary mandibular left first molar in the mesial area demonstrated the lowest von Mises stress accumulation. Intense stress accumulation on the distal surface of tooth 74 was observed in the test models due to the transmitted forces by the FSM. The maximum principal stresses accumulated at the base of the alveolar socket of the mesial root of tooth 36, while the minimum principal stresses were identified at the mesio-marginal area of the alveolar crest. The arm design played a crucial role in enabling the appliance to effectively withstand the stresses accumulating on the Space maintainer (SM) and orthodontic band. Bending the SM arms to match the surrounding profile with curvature increased the stress absorption capacity by increasing the arm length.

摘要

固定式间隙保持器(FSM)常用于儿童牙科,以防止过早拔牙后间隙丢失。尽管先前的研究已经检查了 FSM 失败的存活率和原因,但臂设计对失败的影响尚未得到调查。本研究旨在研究具有不同臂设计的 FSM 相关的拉伸和压缩应力,并评估臂设计对 FSM 失败的影响。从我们的数据库中检索到一名儿童因下颌左侧第二乳磨牙过早缺失的锥形束计算机断层扫描图像,然后使用 Rhinoceros 软件对其进行处理和模拟。有限元分析用于评估在模拟咀嚼力下四种不同 FSM 臂设计的应力。结果表明,直臂 FSM 设计表现出最高的 von Mises 主应力,而带有弯曲臂和在近中区域周围的下颌左侧第一乳磨牙的 FSM 表现出最低的 von Mises 应力积累。由于 FSM 传递的力,在测试模型中观察到牙 74 远侧表面上的剧烈应力积累。最大主应力积聚在牙 36 的近中根牙槽骨的牙槽窝基部,而最小主应力在牙槽嵴的近中-边缘区域被识别。臂设计在使器械能够有效承受在间隙保持器(SM)和正畸带积累的应力方面起着至关重要的作用。通过弯曲 SM 臂以匹配周围的曲率,可以通过增加臂长来提高应力吸收能力。

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