首页> 外文期刊>European journal of oral sciences >Undermining of enamel as a mechanism of abfraction lesion formation: a finite element study.
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Undermining of enamel as a mechanism of abfraction lesion formation: a finite element study.

机译:牙釉质破坏是形成病变部位的机制:有限元研究。

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摘要

Many workers have suggested that abfraction lesion formation is caused by the physical overloading of enamel. However, an alternative mechanism, involving undermining of the cervical enamel along the amelodentinal junction (ADJ), may be a more realistic explanation. The aim of this study was to examine what effect undermining of the buccal cervical enamel would have on the stress distribution in upper teeth. Two-dimensional plain strain finite element meshes of an upper incisor, canine and first premolar and the supporting periodontal ligament and alveolar bone were developed. Each tooth was loaded with an oblique 100 N load, and the nodal maximum principal stresses (MPS) along a buccal horizontal sampling plane 1.1 mm above the amelo-cemental junction was measured. A discontinuity between the cervical enamel and dentine elements was then introduced (0.1 mm wide) using gap elements. The vertical extent of this defect varied from 0.1 to 0.5 mm. The value of the MPS varied from 1.8 to 209 Mpa, and the lowest values were found for the intact teeth (range 0.6-30.3 MPa). The discontinuity caused a dramatic increase in the numerical values of the MPS, and in many instances these exceeded the known failure stress for enamel.
机译:许多工作人员认为,牙釉质的物理超负荷是造成畸形病变的原因。但是,一种替代机制可能涉及更现实的解释,该机制涉及沿牙龈交界处(ADJ)破坏宫颈珐琅质。这项研究的目的是研究破坏口腔颊釉质会对上颌牙齿的应力分布产生何种影响。建立了上切牙,犬齿和第一前磨牙的二维平面应变有限元网格,以及牙周膜和牙槽骨的支撑。每个牙齿都承受100 N的倾斜负载,并测量沿牙龈-水泥接合面上方1.1 mm的颊面水平采样平面的节点最大主应力(MPS)。然后使用间隙元件在宫颈釉质和牙本质元件之间引入不连续性(0.1毫米宽)。此缺陷的垂直范围从0.1到0.5 mm不等。 MPS的值从1.8到209 Mpa不等,完整牙齿的最低值(0.6-30.3 MPa)。不连续性导致MPS的数值急剧增加,并且在许多情况下,这些值超过了搪瓷的已知破坏应力。

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