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Comparison of occlusal loading conditions in a lower second premolar using three-dimensional finite element analysis

机译:下颌第二磨牙的咬合负荷条件的三维有限元分析

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Objectives: This study aimed to compare the patterns of stress distribution in a lower second premolar using three conventional occlusal loadings and two more realistic loading scenarios based on occlusal contact areas. Materials and methods: The teeth of a dried modern human skull were micro-CT scanned in maximum intercuspation contact with a Viscom X8060 NDT X-ray system. A kinematic analysis of the surface contacts between antagonistic right upper and lower teeth during the power stroke was carried out in the Occlusal Fingerprint Analyser (OFA) software. Stress distribution in the lower right second premolar was analysed using three-dimensional finite element (FE) methods, considering occlusal information taken from OFA results (cases 4-5). The output was compared to that obtained by loading the tooth with a single point force (cases 1-3). Results: Results for cases 1-3 differ considerable from those of cases 4-5. The latter show that tensile stresses might be concentrated in grooves and fissures of the occlusal surface, in the marginal ridges, in the disto-lingual and in the distal side of the root. Moreover, the premolar experiences high tensile stresses in the buccal aspect of the crown, supporting the idea that abfraction might be a dominant factor in the aetiology of non-carious cervical lesions. Conclusions: The application of FE methods in dental biomechanics can be advanced considering individual wear patterns. Clinical relevance: More realistic occlusal loadings are of importance for both new developments in prosthetic dentistry and improvements of materials for tooth restoration, as well to address open questions about the worldwide spread problem of dental failure.
机译:目的:本研究旨在使用三种传统的咬合负荷和两种基于咬合接触面积的更现实的负荷情况,比较下第二前磨牙的应力分布模式。材料和方法:用Viscom X8060 NDT X射线系统在最大咬合接触下对干燥的现代人类头骨的牙齿进行微CT扫描。在咬合指纹分析器(OFA)软件中,进行了中风期间右上,下颌拮抗牙齿之间的表面接触的运动学分析。考虑到从OFA结果获取的咬合信息,使用三维有限元(FE)方法分析了右下第二磨牙的应力分布(案例4-5)。将输出与通过单点作用力加载牙齿获得的输出进行比较(案例1-3)。结果:情况1-3的结果与情况4-5的结果有很大不同。后者表明,拉应力可能集中在牙合面的沟槽和裂隙,边缘脊,齿根舌和舌根的远端。此外,前磨牙在牙冠的颊侧承受较高的拉伸应力,支持以下观点:在非龋齿性宫颈病变的病因中,屈曲可能是一个主要因素。结论:考虑到个体的磨损方式,可以将有限元方法在牙科生物力学中的应用进一步发展。临床意义:更加切合实际的咬合负荷对于修复牙科的新发展和用于牙齿修复的材料的改进都很重要,并且对于解决全球范围内的牙齿衰竭问题也存在着开放性问题。

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