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下颌体部正中联合区骨折段固定的“Zeta”微型接骨板设计与传统微型接骨板系统的生物力学分析与比较——一项体外研究。

Biomechanical analysis and comparison between 'Zeta' miniplate design and conventional miniplate system for fixation of fracture segments in transition zone of parasymphysis body region of mandible - an in vitro study.

机构信息

Department of Oral and Maxillofacial Surgery, Saraswati Dental College & Hospital, Tiwariganj, Lucknow, UP, India.

Kanachur Institute of Medical Sciences, Mangalore, Karnataka, India.

出版信息

Br J Oral Maxillofac Surg. 2024 Jun;62(5):441-447. doi: 10.1016/j.bjoms.2024.01.008. Epub 2024 Jan 30.

Abstract

The parasymphysis area of the mandible is highly dynamic because it is subjected to both occlusal and muscular forces. As a result, the fractures in this transition zone have a special pattern, posing a challenge for surgeons whether to use one miniplate versus two miniplates, as per Champy's recommendations. The commonest complication resulting to treat this area is mental nerve paraesthesia due to the dissection and stretching of the nerve. Hence, an in vitro research study of a newly designed 'Zeta' miniplate is performed, to evaluate the biomechanical behaviour using finite element (FE) analysis and biomechanical analysis along with a comparison study with the conventional miniplate configurations. The results showed that the Zeta miniplate produces the lowest stresses 17.511 MPa and the least total structural deformation of 0.0011 mm after applying the maximum occlusal bite force. On application of torsional load, total structural deformation was 0.0004 mm and von Mises (VM) stress value was 0.24 MPa which was lowest when compared with the two miniplate system. Hence, the newly developed Zeta miniplate is superior in terms of stability. Another benefit of its design is that it helps in preventing mental nerve paraesthesia and tooth root damage while fixing and stabilising the fractured bony segments.

摘要

下颌体正中联合区非常活跃,因为它同时受到咬合和肌肉的力量。因此,这个过渡区域的骨折具有特殊的模式,这对医生来说是一个挑战,即根据 Champy 的建议,是使用一块迷你板还是两块迷你板。治疗这个区域最常见的并发症是由于神经的解剖和拉伸导致的颏神经感觉异常。因此,对一种新设计的“Zeta”迷你板进行了体外研究,使用有限元(FE)分析和生物力学分析来评估生物力学行为,并与传统迷你板构型进行了比较研究。结果表明,在施加最大咬合咬合力后,Zeta 迷你板产生的应力最低,为 17.511 MPa,总结构变形最小,为 0.0011 mm。在施加扭转载荷时,总结构变形为 0.0004 mm,von Mises(VM)应力值为 0.24 MPa,与双迷你板系统相比,这是最低的。因此,新开发的 Zeta 迷你板在稳定性方面更具优势。其设计的另一个好处是,它有助于在固定和稳定骨折骨段时防止颏神经感觉异常和牙根损伤。

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