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Finite Element Analysis of Mechanical Behavior of Restored Maxillary and Mandibular Deciduous Incisors

机译:恢复上颌和下颌落叶的机械行为有限元分析

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The management of traumatic dental caries in primary teeth has the main objective to avoid their consequences that can affect the immediate and longterm quality of life of the child. Aggressive forms of decays can develop on smooth surfaces of teeth and progress rapidly, the effect being detrimental on the dentition. The objective of this study was to compare the stress and displacement distributions in the models of two assemblies by means of the three-dimensional finite element analysis: deciduous maxillary lateral incisor - restorative filling - bone structure and deciduous mandibular lateral incisor - restorative filling - bone structure respectively. Both models were subjected to a 120 N static load applied on the upper surface. The models were built from computed-tomography scans. Two different restorative dental materials were considered. In addition, the results obtained were compared with previous research of the authors, i.e. the mechanical behavior of a deciduous restored molar and deciduous restored canine respectively. As a result of the study, it can be concluded that the biomechanical analysis of deciduous dental caries is a valuable aid in enabling the dentist to make correct and effective treatment decisions.
机译:在初级牙齿中的创伤龋齿管理主要目的是避免其后果可能影响孩子的直接和长期生活质量。腐蚀性的腐蚀形式可以在牙齿的光滑表面上发展,迅速进展,效果对牙列有害。本研究的目的是通过三维有限元分析比较两种组件模型中的应力和位移分布:落叶上颌侧面切牙 - 恢复性灌浆 - 骨结构和落叶下颌横向切口 - 恢复填充 - 骨骼结构分别。两种型号施加在上表面上的120 n静态负载。该模型是由计算机断层扫描扫描构建的。考虑了两种不同的恢复牙科材料。此外,将得到的结果与先前的作者研究进行了比较,即分别落叶恢复摩尔和落叶腐烂的犬的力学行为。由于研究的结果,可以得出结论,落叶龋齿的生物力学分析是使牙医能够做出正确和有效的治疗决策的宝贵援助。

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