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下颌第三磨牙的角度会影响下颌体创伤后下颌角的易碎性吗?一项三维有限元研究。

Does the angulation of the mandibular third molar influence the fragility of the mandibular angle after trauma to the mandibular body? A three-dimensional finite-element study.

作者信息

Kılınç Yeliz, Zor Zeynep Fatma, Tümer Mehmet Kemal, Erkmen Erkan, Kurt Ahmet

机构信息

a Department of Oral and Maxillofacial Surgery, Faculty of Dentistry , Gazi University , Ankara , Turkey.

b Department of Oral and Maxillofacial Surgery, Faculty of Dentistry , Gaziosmanpaşa University , Tokat , Turkey.

出版信息

Comput Methods Biomech Biomed Engin. 2018 May;21(7):488-497. doi: 10.1080/10255842.2018.1482282. Epub 2018 Jul 3.

Abstract

The relationship between mandibular third molar (M3) angulation and mandibular angle fragility is not well established. The aim of this study was to evaluate the impact of M3 angulation on the mandibular angle fragility when submitted to a trauma to the mandibular body region. A three-dimensional (3D) mandibular model without M3 (Model 0) was obtained by means of finite-element analysis (FEA). Four models were generated from the initial model, representing distoangular (Model D), horizontal (Model H), mesioangular (Model M) and vertical (Model V) angulations. A blunt trauma with a magnitude of 2000 N was applied perpendicularly to the sagittal plane in the mandibular body. Maximum principal stress (P) (tensile stress) values were calculated in the bone. The lowest P stress values were noted in Model 0. When the M3 was present extra stress fields were found around marginal bone of second molar and M3. Comparative analysis of the models with M3 revealed that the highest level of stress was found in Model V, whereas Model D showed the lowest stress values. The angulation of M3 affects the stress levels in the mandibular angle and has an impact on mandibular fragility. The mandibular angle becomes more fragile in case of vertical impaction when submitted to a trauma to the mandibular body region.

摘要

下颌第三磨牙(M3)的角度与下颌角的脆弱性之间的关系尚未明确确立。本研究的目的是评估在下颌体区域遭受创伤时,M3角度对下颌角脆弱性的影响。通过有限元分析(FEA)获得了一个没有M3的三维(3D)下颌模型(模型0)。从初始模型生成了四个模型,分别代表远中倾斜(模型D)、水平(模型H)、近中倾斜(模型M)和垂直(模型V)角度。在下颌体中,垂直于矢状面施加了大小为2000 N的钝性创伤。计算骨中的最大主应力(P)(拉应力)值。在模型0中观察到最低的P应力值。当存在M3时,在第二磨牙和M3的边缘骨周围发现了额外的应力场。对有M3的模型进行比较分析发现,模型V中的应力水平最高,而模型D中的应力值最低。M3的角度会影响下颌角的应力水平,并对下颌的脆弱性产生影响。当下颌体区域遭受创伤时,垂直阻生情况下下颌角会变得更加脆弱。

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