Summed Tissue Resistance of Periodontal Ligaments and Alveolar Bone in Orthodontic Distal Retraction of Maxillary Canines: Mathematical Simulation of Clinical Data and Interpretation of Results.

IF 3.1 Q2 DENTISTRY, ORAL SURGERY & MEDICINE Dentistry Journal Pub Date : 2025-01-27 DOI:10.3390/dj13020055
Olimpia Bunta, Vlad Muresan, Dana Festila, Mihaela Baciut
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Abstract

Background: The mechanical properties of either alveolar bone or periodontal ligaments under orthodontic loading, as well as orthodontic tooth movement, have been studied in recent years using computational approaches. In previous studies, we developed a theoretical mathematical approach that uses a weighting coefficient of the summed resistance of periodontal structures, namely the bone and periodontal ligaments, in relation to apex movement, the center of rotation, orthodontic force loading, and time in order to quantify the biological response to orthodontic biomechanics. Methods: We analyzed the distal retraction of three maxillary canines and integrated the clinical data obtained in the previously developed mathematical programs. Results: The values of the (σ) weighting coefficient of the tissue resistance were interpreted in the context of the clinical data obtained: the smaller the value of (σ), the higher the actual tissue resistance, with a greater difference between the crown and root movement; also, the higher the value of (σ), the lower the actual tissue resistance, with a small difference between the crown and apex movement. Conclusions: The clinical interpretation of the results allows us to set a premise for the refinement of the mathematical programs so that we can use them in assessing the orthodontic biomechanics of larger patient groups over longer periods of time and create premises of treatment protocol simplification and adjustment.

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正畸上颌犬远端内收时牙周韧带和牙槽骨的组织阻力总和:临床数据的数学模拟及结果解释。
背景:近年来,人们利用计算方法研究了正畸载荷下牙槽骨或牙周韧带的力学特性以及正畸牙齿的运动。在之前的研究中,我们开发了一种理论数学方法,使用牙周结构(即骨和牙周韧带)与尖部运动、旋转中心、正畸力载荷和时间相关的总阻力加权系数来量化正畸生物力学的生物反应。方法:对上颌三根上颌尖牙的远端后伸进行分析,并将以往开发的数学程序中获得的临床数据进行整合。结果:组织阻力加权系数(σ)的取值与临床数据吻合:(σ)值越小,实际组织阻力越大,牙冠与牙根运动差异越大;(σ)值越大,实际组织阻力越小,树冠和叶尖运动差异不大。结论:对结果的临床解释为数学程序的完善奠定了前提,使我们能够在更大的患者群体中长期评估正畸生物力学,并为简化和调整治疗方案创造了前提。
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来源期刊
Dentistry Journal
Dentistry Journal Dentistry-Dentistry (all)
CiteScore
3.70
自引率
7.70%
发文量
213
审稿时长
11 weeks
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