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Effects of Alveolar Bone Loss and Post-Core Design on Stress Distribution of Severely Damaged Canine

机译:牙槽骨丢失和后核设计对重度损伤犬的应力分布的影响

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To investigate the influence of alveolar bone loss and post design on stress distribution of a severely damaged canine. The residual canal dentin wall in the cervical region was standardized at 0.5mm in thickness. Twelve two-dimensional finite element models were created. The models were varied in their alveolar bone loss. The post systems include computer-aided design/computer-aided manufacturing zirconium post, prefabricated glass fiber post, cast stainless steel post, and cast gold post. The numerical models were considered to be restored with an all-ceramic crown. A load of 100N was applied to the crown at an angle of 45 degree on the lingual surface, and Mises stresses were calculated. Finite element analysis revealed that cast stainless steel post system showed the lowest maximum Mises stress in the dentin at 86.46 MPa, while, glass fiber post resulted in the highest stress concentration in the dentin at 174.3 MPa. Stresses were reduced by increasing alveolar height. Loss of alveolar bone loss may lead to an increased risk of failure.
机译:调查牙槽骨丢失和后期设计对严重受损犬的应力分布的影响。宫颈区域中残留的牙本质管壁标准化为0.5mm的厚度。创建了十二个二维有限元模型。这些模型的牙槽骨损失各不相同。桩系统包括计算机辅助设计/计算机辅助制造的锆桩,预制玻璃纤维桩,铸不锈钢桩和铸金桩。数值模型被认为是用全瓷冠修复的。将100N的载荷以45度角向舌头表面施加到牙冠,并计算Mises应力。有限元分析表明,铸造不锈钢桩系统在牙本质中的最低Mises应力为86.46 MPa,而玻璃纤维桩在牙本质中的应力集中最高,为174.3 MPa。压力通过增加牙槽高度而减少。牙槽骨丢失可能导致失败的风险增加。

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