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下颌近中及水平阻生第三磨牙手术中长轴拔除法的临床应用及三维有限元分析

[Clinical application and three-dimensional finite element analysis of along-axis extraction method in mandibular mesial and horizontally impacted third molar surgery].

作者信息

Wang Fei, Zhang Xinyue, Liu Muqing, Wang Enbo, Duan Denghui

机构信息

Department of Oral and Maxillofacial Surgery, Peking University School and Hospital of Stomatology & National Center for Stomatology & National Clinical Research Center for Oral Diseases & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices, Beijing 100081, China.

Center for Digital Dentistry, Peking University School and Hospital of Stomatology & National Center for Stomatology & National Clinical Research Center for Oral Diseases & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices, Beijing 100081, China.

出版信息

Beijing Da Xue Xue Bao Yi Xue Ban. 2025 Feb 18;57(1):106-112. doi: 10.19723/j.issn.1671-167X.2025.01.016.

Abstract

OBJECTIVE

To investigate the clinical application effect of the along-axis extraction method in the extraction of impacted mandibular third molars (IMTM) and to compare the biomechanical characteristics of different root extraction techniques through three-dimensional finite element analysis.

METHODS

A total of 68 patients requiring IMTM extraction were enrolled and randomly divided into two groups: the experimental group underwent the along-axis extraction method, while the control group underwent the traditional buccal bone removal and root extraction method. The duration of the procedure, intraoperative and postoperative complications were recorded. Three-dimensional finite element analysis further revealed the stress distribution in the tooth root, jawbone, periodontal ligament, and mandibular canal during different root extraction methods.

RESULTS

The duration of root extraction, pain score and swelling on the first postoperative day in the control group were (7.87±3.90) min, 4.62±1.90 and (11.37±5.12) mm, respectively, which were significantly higher than those in the experimental group [(5.74±2.37) min, 3.87±1.19 and (7.22±3.39) mm, respectively]. The root fracture rate and lingual bone plate fracture rate in the control group were significantly higher than those in the experimental group ( < 0.05). The results of finite element analysis showed that the control group ' s lingual al-veolar bone had the higher peak equivalent stress, and lingual bone plate fracture was prone to occur. The periodontal ligament of the experimental group had the higher equivalent stress value, making it more likely to rip and more likely to cause root displacement. When subjected to force, the experimental group' s instantaneous root displacement was higher, but the control group ' s root displacement was more pronounced in the lingual direction.

CONCLUSION

This study suggests that the along-axis extraction me-thod can not only effectively shorten the operative time but also reduce postoperative complications after extraction of impacted mandibular third molars, and enhance the safety of the operation and the patient' s comfort. Three-dimensional finite element analysis shows the biomechanical characteristics of various root extraction techniques visually, serves as a valuable guide for choosing and refining clinical surgical techniques, and confirms that extracting a tooth' s root along its long axis yields better clinical results.

摘要

目的

探讨长轴拔除法在下颌阻生第三磨牙(IMTM)拔除中的临床应用效果,并通过三维有限元分析比较不同牙根拔除技术的生物力学特性。

方法

选取68例需要拔除IMTM的患者,随机分为两组:实验组采用长轴拔除法,对照组采用传统颊侧去骨牙根拔除法。记录手术时间、术中及术后并发症。三维有限元分析进一步揭示了不同牙根拔除方法下牙根、颌骨、牙周膜及下颌管内的应力分布情况。

结果

对照组的牙根拔除时间、术后第1天的疼痛评分及肿胀程度分别为(7.87±3.90)分钟、4.62±1.90及(11.37±5.12)毫米,均显著高于实验组[分别为(5.74±2.37)分钟、3.87±1.19及(7.22±3.39)毫米]。对照组的牙根折断率及舌侧骨板骨折率显著高于实验组(<0.05)。有限元分析结果显示,对照组舌侧牙槽骨的等效应力峰值较高,易发生舌侧骨板骨折。实验组牙周膜的等效应力值较高,更易撕裂,更易导致牙根移位。受力时,实验组的瞬时牙根位移较高,但对照组的牙根位移在舌侧方向更明显。

结论

本研究表明,长轴拔除法不仅能有效缩短下颌阻生第三磨牙拔除的手术时间,还能减少术后并发症,提高手术安全性及患者舒适度。三维有限元分析直观显示了各种牙根拔除技术的生物力学特性,为临床手术技术的选择和优化提供了有价值的指导,并证实沿牙长轴拔除牙根可取得更好的临床效果。

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