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首页> 外文期刊>Brazilian Oral Research >Stress distribution in the cervical region of an upper central incisor in a 3D finite element model
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Stress distribution in the cervical region of an upper central incisor in a 3D finite element model

机译:3D有限元模型中上中切牙子宫颈区域的应力分布

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摘要

The aim of this study was to evaluate the stress distribution in the cervical region of a sound upper central incisor in two clinical situations, standard and maximum masticatory forces, by means of a 3D model with the highest possible level of fidelity to the anatomic dimensions. Two models with 331,887 linear tetrahedral elements that represent a sound upper central incisor with periodontal ligament, cortical and trabecular bones were loaded at 45o in relation to the tooth's long axis. All structures were considered to be homogeneous and isotropic, with the exception of the enamel (anisotropic). A standard masticatory force (100 N) was simulated on one of the models, while on the other one a maximum masticatory force was simulated (235.9 N). The software used were: PATRAN for pre- and post-processing and Nastran for processing. In the cementoenamel junction area, tensile forces reached 14.7 MPa in the 100 N model, and 40.2 MPa in the 235.9 N model, exceeding the enamel's tensile strength (16.7 MPa). The fact that the stress concentration in the amelodentinal junction exceeded the enamel's tensile strength under simulated conditions of maximum masticatory force suggests the possibility of the occurrence of non-carious cervical lesions such as abfractions.
机译:这项研究的目的是通过3D模型来评估在解剖学上可能具有最高保真度的3D模型,以评估在两种临床情况下(标准和最大咀嚼力)合理的上中切牙的子宫颈区域中的应力分布。相对于牙齿的长轴,两个具有331887个线性四面体元素的模型代表了一个良好的上中切牙和牙周膜,皮质骨和小梁骨。除搪瓷(各向异性)外,所有结构均被视为均质且各向同性。在其中一个模型上模拟了标准咀嚼力(100 N),而在另一个模型上,模拟了最大咀嚼力(235.9 N)。使用的软件是:PATRAN用于预处理和后期处理,以及Nastran用于处理。在牙釉质结合区,在100 N模型中的拉伸力达到14.7 MPa,在235.9 N模型中的拉伸力达到40.2 MPa,超过了搪瓷的拉伸强度(16.7 MPa)。在最大咀嚼力的模拟条件下,牙龈交界处的应力集中超过牙釉质的抗张强度这一事实表明,可能发生非龋齿性宫颈病变,例如畸形。

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