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首页> 外文期刊>Journal of Cranio-Maxillofacial Surgery >An in-vitro evaluation of a novel design of miniplate for fixation of fracture segments in the transition zone of parasymphysis-body region of mandible using finite element analysis
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An in-vitro evaluation of a novel design of miniplate for fixation of fracture segments in the transition zone of parasymphysis-body region of mandible using finite element analysis

机译:使用有限元分析将颌骨颌骨颌骨过渡区裂缝区段固定的微型模型设计的体外评价

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摘要

The mandibular parasymphysis and body regions are highly dynamic areas. They are constantly subjected to both occlusal and muscular forces. Fractures at this transition zone of the parasymphysis and body region thus represent a special pattern that creates a dilemma for the surgeons - whether to use one miniplate fixation or two miniplates as per Champy's guidelines. Mental nerve paresthesia is a very common complication due to dissection and stretching of the mental nerve in this region. Hence, an in-vitro research study of a novel twin fork design of miniplate is performed, which evaluates the biomechanical behavior using computerized finite element analysis. A comparison is carried out with the conventional design. The results show that the twin fork miniplate produces the lowest stresses - 23.821 MPa - and the least total structural deformation after applying the maximum occlusal bite force. This study concludes that the newly designed miniplate is superior in terms of stability because it shows the least structural deformation, and produces the lowest equivalent stresses on application of maximal occlusal forces. An additional advantage is the preservation of the mental nerve during the plating procedure because the broad end of the Y shape allows atraumatic positioning of the miniplate and hence the fixation of fractured segments. (C) 2018 European Association for Cranio-Maxillo-Facial Surgery. Published by Elsevier Ltd. All rights reserved.
机译:下颌血小映体和体积是高度动态的区域。它们不断受到咬合和肌肉力量。因此,这种过渡带的骨折和体区域的骨折代表了一种特殊的模式,它为外科医生产生了困境 - 是否根据香槟的指南使用一个微型固定或两个小尖端。精神神经感觉是由于该地区精神神经的解剖和伸展,是一种非常常见的并发症。因此,进行了对微型板的新型双叉设计的体外研究研究,其使用计算机化有限元分析评估了生物力学行为。通过传统设计进行比较。结果表明,在施加最大咬合咬合力后,双叉式小板产生最低应力 - 23.821MPa - 以及总结构变形。这项研究得出结论,新设计的微型板在稳定性方面优越,因为它显示出最小的结构变形,并产生最大咬合力的相同应力最低。额外的优点是在电镀过程中保存精神神经,因为Y形的宽端允许微型板的以非法定位并因此固定裂缝段的固定。 (c)2018年欧洲Cranio-Maxillo-Facial手术协会。 elsevier有限公司出版。保留所有权利。

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