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不同厚度护齿器对麻醉期间牙外伤的防护潜力:一项基于患者个体的有限元研究

Protective potential of different mouthguard thicknesses against perianaesthetic dental trauma: a patient specific-finite element study.

作者信息

Doğan Suat Serhan Altıntepe, Doğan Özgür, Doğan Özge, Başkurt Nihan Altıntepe

机构信息

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

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

出版信息

Comput Methods Biomech Biomed Engin. 2024 Aug;27(10):1346-1356. doi: 10.1080/10255842.2023.2247515. Epub 2023 Aug 17.

Abstract

Perianaesthetic dental trauma is a common anaesthesia-related complication. Theprevious studies have shown a lack of knowledge regarding mouthguard usage and controversial results related to perianaesthetic dental trauma prevention. This study aimed to conduct a finite element analysis of the compressive and tensile stresses on the tooth-periodontal ligament-bone complex using custom-made mouthguards of different thicknesses and glass fibre splints to prevent perianaesthetic dental trauma. Custom-fitted ethylene-vinyl acetate mouthguards of two different thicknesses (2 and 3 mm) and glass fibre splint were modelled. A linear static finite element analysis was performed by applying a rigid Macintosh laryngoscope to the palatal surface of the maxillary central incisors at 150 N. The model without a mouthguard and glass fibre splint showed the highest stress values at the palatinal root surfaces during the impact. Increasing the mouthguard thickness significantly decreased the stress-strain values regardless of the presence of the glass fibre splint. Maximum stresses in the group using the 3 mm mouthguard were the lowest compared with the other groups.

摘要

围麻醉期牙齿创伤是一种常见的与麻醉相关的并发症。先前的研究表明,对于护齿器的使用缺乏了解,并且在围麻醉期牙齿创伤预防方面的结果存在争议。本研究旨在使用不同厚度的定制护齿器和玻璃纤维夹板,对牙齿-牙周膜-骨复合体上的压缩和拉伸应力进行有限元分析,以预防围麻醉期牙齿创伤。对两种不同厚度(2毫米和3毫米)的定制乙烯-醋酸乙烯酯护齿器和玻璃纤维夹板进行建模。通过在上颌中切牙的腭面施加150牛的刚性麦金托什喉镜进行线性静态有限元分析。没有护齿器和玻璃纤维夹板的模型在撞击过程中腭根表面的应力值最高。无论是否存在玻璃纤维夹板,增加护齿器厚度都会显著降低应力-应变值。与其他组相比,使用3毫米护齿器的组中的最大应力最低。

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