Comparative study of torque expression and its biomechanical effects: spherical self-ligating bracket with lock-hook system versus passive self-ligating bracket and conventional bracket.

IF 2.6 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE BMC Oral Health Pub Date : 2025-01-06 DOI:10.1186/s12903-025-05423-6
Yudong Liu, Longmei Guo, Yanqing Feng, Jiahao Hua, Qingyuan Dai, Ziyang Chen, Wenlu Song, Bing Guo, Taicong Chen, Li Ji
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Abstract

Background: Proper torque control is crucial to the outcome of orthodontic treatment. This study aimed to employ finite element analysis to compare the torque capabilities of a novel spherical self-ligating bracket with a lock-hook system against those of commonly used passive self-ligating and conventional bracket systems, as well as to reveal the biomechanical changes in the periodontal ligament (PDL) during torque expression.

Methods: A maxillary right central incisor, along with its PDL and alveolar bone, were modeled. Three types of brackets were selected: a spherical self-ligating bracket with a lock-hook system, a passive self-ligating bracket (Damon), and a conventional bracket (Discovery). Each bracket was equipped with a 0.022-inch slot and a 0.019 × 0.025-inch stainless steel archwire. A palatal root torque of 20° was applied. The torque moment, as well as the von Mises stress and strain in the PDL, were calculated. A clinical case involving the lingual inclination of the upper anterior teeth was utilized to assess the feasibility of using the spherical self-ligating bracket with the lock-hook system to express torque.

Results: At a twist angle of 20°, the maximum torque generated by the spherical self-ligating bracket with a lock-hook system (27.8 N·mm) was approximately 1.6 times greater than that of the Damon bracket (17.5 N·mm) and the Discovery bracket (17.3 N·mm). As the twist angle increased, both the von Mises stress and the strain in the PDL also increased. When the maximum PDL stress was less than 0.026 MPa and the percentage of the PDL good strain area (defined as the area with PDL strain ≥ 0.3%) exceeded 50%, the torque range for the maxillary incisor was between 10.2 and 17.5 N·mm. The clinical case demonstrated that the use of the spherical self-ligating bracket with the lock-hook system effectively corrected the unfavorable linguoclination of the maxillary incisors.

Conclusions: The spherical self-ligating bracket with a lock-hook system can significantly enhance torque expression. The optimal torque range for the maxillary incisor is between 10.2 and 17.5 N·mm.

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带锁钩系统的球形自结扎支架与被动自结扎支架和常规支架的扭矩表达及其生物力学效应比较研究。
背景:正确的力矩控制对正畸治疗的效果至关重要。本研究旨在通过有限元分析比较一种新型的球形自结扎托具锁钩系统与常用的被动自结扎托具和传统托具系统的扭矩能力,并揭示在扭矩表达过程中牙周韧带(PDL)的生物力学变化。方法:建立上颌右中切牙及其牙槽骨模型。选择了三种类型的托架:带锁钩系统的球形自结扎托架、被动自结扎托架(Damon)和常规托架(Discovery)。每个支架配有一个0.022英寸的槽和一个0.019 × 0.025英寸的不锈钢拱丝。腭根扭矩为20°。计算了PDL中的力矩、von Mises应力和应变。本文以一临床病例为研究对象,对上前牙舌侧倾斜的球形自结扎托架配合锁钩系统进行扭矩表达的可行性进行了评估。结果:在扭转角度为20°时,带锁钩系统的球形自结扎支架产生的最大扭矩(27.8 N·mm)约为Damon支架(17.5 N·mm)和Discovery支架(17.3 N·mm)的1.6倍。随着扭转角的增大,PDL中的von Mises应力和应变也随之增大。当最大PDL应力小于0.026 MPa,且PDL良好应变区(定义为PDL应变≥0.3%的区域)所占比例大于50%时,上颌切牙的扭矩范围在10.2 ~ 17.5 N·mm之间。临床病例表明,采用带锁钩系统的球形自结扎支架可以有效地矫正上颌切牙的不良舌斜。结论:带锁钩系统的球形自结扎支架可显著提高扭矩表达。上颌切牙的最佳扭矩范围为10.2 ~ 17.5 N·mm。
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来源期刊
BMC Oral Health
BMC Oral Health DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
3.90
自引率
6.90%
发文量
481
审稿时长
6-12 weeks
期刊介绍: BMC Oral Health is an open access, peer-reviewed journal that considers articles on all aspects of the prevention, diagnosis and management of disorders of the mouth, teeth and gums, as well as related molecular genetics, pathophysiology, and epidemiology.
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