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首页> 外文期刊>Journal of Research in Dentistry >Effects of non-carious cervical lesions and coronary structure loss association on biomechanical behavior of maxillary premolars
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Effects of non-carious cervical lesions and coronary structure loss association on biomechanical behavior of maxillary premolars

机译:非龋性颈椎病变和冠状动脉结构丢失的关联对上颌前磨牙生物力学行为的影响

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摘要

Introduction: Dental lesions and cavity preparations can impact the biomechanical behavior of teeth due to tooth structure loss. Objective: Analyze the influence of tooth structure loss associated to non-carious cervical lesions (NCCLs) and coronary preparations on biomechanical behavior of maxillary premolars, restored or not, using finite element analysis (FEA). Material and methods: Virtual models were generated using a longitudinal cut image of a maxillary premolar, exported to a finite element software (Ansys 12.0) and analyzed as follows: sound tooth (S); MOD preparation (P); MOD preparation restored with composite resin (PR); cervical lesion (L); cervical lesion restored with composite resin (LR); and combinations, PR+LR; P+L; PR+L; P+LR. The areas corresponding to each structure were plotted and then meshed with eight-node isoparametric plane elements (PLANE183) in accordance to mechanical properties of each structure and materials. The materials and structures were assumed elastic, isotropic, homogeneous and linear, except for enamel and dentin, considered orthotropic. Oblique load (45N) was applied on buccal and palatal cusps, simulating an experimental tooth-sphere contact. Von Mises (VM) and maximum principal stress (S1) criteria were applied for analyzing the results. Results: FEA using VM criterion revealed similar stress distribution patterns for groups S, PR, LR and PR+LR. Models L, P+L, P+LR and PR+L presented the highest stress at the center of NCCLs, with S1 levels of 0.22, 0.2, 0.25 and 0.31 MPa, respectively. For groups P and P+LR, Von Mises stress concentration was observed at internal angles of preparation and at base of cusps. Conclusion: NCCLs and intracoronal structure loss associated promoted high stress concentration in dental structure and at center of lesion. The load application influenced the stress distribution, and the models of groups restored with composite resin tend to mimic the biomechanical behavior of sound tooth model.
机译:简介:牙齿损伤和蛀牙准备会因牙齿结构丧失而影响牙齿的生物力学行为。目的:利用有限元分析(FEA)分析与非龋性颈椎病灶(NCCLs)和冠状动脉制剂相关的牙齿结构缺失对上颌前磨牙的生物力学行为的影响。材料和方法:使用上颌前磨牙的纵向切割图像生成虚拟模型,并将其导出到有限元软件(Ansys 12.0)中,并进行如下分析: MOD准备(P);用复合树脂(PR)恢复MOD制备;宫颈病变(L);复合树脂(LR)修复宫颈病变;和组合,PR + LR; P + L; PR + L; P + LR。绘制对应于每种结构的区域,然后根据每种结构和材料的机械特性与八节点等参平面元素(PLANE183)啮合。除了搪瓷和牙本质被认为是正交各向异性的以外,其他材料和结构均假定为弹性,各向同性,均质和线性的。对颊和pa尖施加斜向负荷(45N),模拟实验性的齿-球接触。冯·米塞斯(VM)和最大主应力(S1)标准用于分析结果。结果:使用VM准则的FEA显示了S,PR,LR和PR + LR组的相似应力分布模式。 L,P + L,P + LR和PR + L模型在NCCL中心呈现最高应力,S1分别为0.22、0.2、0.25和0.31 MPa。对于P和P + LR组,在准备的内角和尖点处观察到Von Mises应力集中。结论:NCCLs和冠状动脉内结构丧失共同促进了牙齿结构和病变中心的高应力集中。载荷的施加影响了应力分布,复合树脂修复的基团模型趋向于模仿健全牙齿模型的生物力学行为。

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