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Finite element investigation of human maxillary incisor under traumatic loading: Static vs dynamic analysis

机译:创伤性载荷下人体上颌切牙的有限元调查:静态VS动态分析

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Background and objectiveTraumatic loading is the main form of injury sustained in dental injuries. In spite of the prevalence of dental trauma, little information is available on traumatic dental damage and the evaluation of tooth behavior under traumatic loading. Due to the short period of traumatic loading, at first sight, a dynamic analysis needs to be performed to investigate the dental trauma. However, it was hypothesized that dental traumatic loading could be regarded as quasi-static loading. Thus, the aim of the present study was to examine this hypothesis. MethodsStatic and dynamic analyses of the human maxillary incisor were carried out under traumatic loading using a 3D finite element method. Also, modal analysis of the tooth model was performed in order to evaluate the assumption of the dental traumatic loading as a quasi-static one. ResultsIt was revealed that the static analysis of dental trauma is preferred to the dynamic analysis when investigating dental trauma, mainly due to its lower computational cost. In fact, it was shown that including the inertia of the tooth structure does not influence the results of the dental trauma simulation. Furthermore, according to the modal analysis of the tooth structure, it was found that the mechanical properties and geometry of the periodontal ligament play significant roles in the classification of dental traumatic loading as a quasi-static one, in addition to the time duration of the applied load. ConclusionsThis paper provides important biomechanical insights into the classification of dental loading as quasi-static, transient or impact loading in future dental studies.
机译:背景和客观同胞造型是患者伤害的主要损伤形式。尽管牙科创伤的患病率,但在创伤性装载下,牙齿创伤牙科损伤以及对牙齿行为的评估提供了很少的信息。由于创伤性载荷短,一见钟情,需要进行动态分析以研究牙科创伤。然而,假设牙科创伤载荷可以被视为准静态载荷。因此,本研究的目的是检查该假设。方法使用3D有限元法在创伤性载荷下进行人颌骨切牙的静态和动态分析。而且,进行了牙齿模型的模态分析,以便评估牙科创伤载荷作为准静态的假设。结果表明,牙科创伤的静态分析是调查牙科创伤时的动态分析,主要是由于其计算成本较低。实际上,表明包括牙齿结构的惯性不会影响牙科创伤模拟的结果。此外,根据牙齿结构的模态分析,发现牙周韧带的机械性能和几何形状在牙科创伤载荷的分类中起显着的作用,除了持续时间之外施加负荷。结论Strhis纸张为牙科装载的分类提供了重要的生物力学见解,以便在未来牙科研究中为准静态,短暂或冲击载荷进行分类。

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