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扭转法拔牙的临床见解:牙-牙周膜复合体的生物力学分析

Clinical insights into tooth extraction via torsion method: a biomechanical analysis of the tooth-periodontal ligament complex.

作者信息

Xing Jiawei, Zhang Guangzeng, Sun Mingliang, Pan Hao, Zhang Congdi, Liu Yao, Li Kehan, He Ze, Zhang Kailiang, Wang Jizeng, Luo En, Zhang Baoping

机构信息

Department (Hospital) of Stomatology, Lanzhou University, Lanzhou, China.

State Key Laboratory of Oral Diseases & National Center for Stomatology & National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, Sichuan, China.

出版信息

Front Bioeng Biotechnol. 2024 Oct 10;12:1479751. doi: 10.3389/fbioe.2024.1479751. eCollection 2024.

Abstract

Traditionally, extracting single, flat- or curved-rooted teeth through twisting is unfeasible. However, our clinical practice suggests that such teeth can be extracted efficiently through moderate twisting in a minimally invasive manner. Given the lack of studies on biomechanics of the tooth-periodontal ligament (PDL) complex during torsion, which has further constrained its application, we assessed the feasibility of the torsion method for extracting single-rooted teeth and evaluated its minimally invasive potential. Using three-dimensional finite element analysis, we examined the stress distribution of the tooth and PDL during torsion. Then, we examined changes in the optimal torsion angle (OTA) and stress distribution across various anatomical scenarios. During torsion loading, stress concentration was primarily observed on the sing-rooted tooth surface near the alveolar crest, whereas molars at the root furcation. The OTA was found to increase under conditions such as narrowing of root width, decrease in the root apical curvature, change from type I to IV bone, alveolar bone loss, and shortening of root length. Moreover, the clinically validated model demonstrated that 74% of outcomes fell within the standard OTA range. In conclusion, the decrease in PDL area necessitated a larger angle for complete PDL tearing. Single-rooted teeth with root width-to-thickness ratios of ≥0.42 and apical curvatures of ≤30°are suitable for extraction using the torsion method. This study confirms the feasibility of the torsion method for minimally invasive tooth extraction and expands its indications, laying the theoretical foundation and essential insights for its clinical application.

摘要

传统上,通过扭转方式拔除单根的扁平或弯曲牙根牙齿是不可行的。然而,我们的临床实践表明,通过适度扭转以微创方式可以有效地拔除此类牙齿。鉴于目前缺乏关于扭转过程中牙齿 - 牙周膜(PDL)复合体生物力学的研究,这进一步限制了其应用,我们评估了扭转法拔除单根牙的可行性,并评估了其微创潜力。我们使用三维有限元分析,研究了扭转过程中牙齿和牙周膜的应力分布。然后,我们研究了在各种解剖学情况下最佳扭转角度(OTA)和应力分布的变化。在扭转加载过程中,应力集中主要出现在牙槽嵴附近的单根牙表面,而磨牙则出现在根分叉处。发现OTA在根宽度变窄、根尖曲率减小、骨型从I型变为IV型、牙槽骨吸收和根长度缩短等情况下会增加。此外,经临床验证的模型表明,74%的结果落在标准OTA范围内。总之,牙周膜面积的减小需要更大的角度来完全撕裂牙周膜。根宽与根厚比≥0.42且根尖曲率≤30°的单根牙适合采用扭转法拔除。本研究证实了扭转法微创拔牙的可行性并扩大了其适应证,为其临床应用奠定了理论基础和关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47d7/11500037/17b39099eb10/FBIOE_fbioe-2024-1479751_wc_abs.jpg

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