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Mechanical and thermal stress evaluation of PEEK prefabricated post with different head design in endodontically treated tooth: 3D-finite element analysis

机译:不同头部设计的PEEK预制柱的机械和热应力评估牙齿:3D UNITITE元分析

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An endodontic post is required to retain and support the core restoration in case of insufficient remaining coronal dentin after root canal therapy. This study analyzed the biomechanical and thermal behavior of PEEK prefabricated post after choosing the head design that produces the least amount of stress on the core and remaining tooth structure. These results were compared with the most common commercially available prefabricated post, which is titanium and glass fiber post. Thus a CBCT scanning of a maxillary central incisor with its supporting structure was used to construct a 3D solid model of an endodontically treated teeth for finite element analysis (FEA). The restored tooth with the spherical head design of PEEK prefabricated post yielded a more benign stress distribution and repairable failure mode on the crown, luting cement, core, and dentin under both mechanical and thermal loads, followed by glass fiber post and titanium post respectively.
机译:在根管治疗后剩余的冠状牙本质不足的情况下,需要一种脊髓牙髓柱并支持核心恢复。 本研究分析了选择在芯和剩余牙齿结构上产生最少量应力的头部设计之后PEEK预制柱的生物力学和热行为。 将这些结果与最常见的商业上可用预制柱进行比较,这是钛和玻璃纤维柱。 因此,使用其支撑结构的上颌中央切牙的CBCT扫描用于构建用于有限元分析(FEA)的内透压处理齿的3D实体模型。 具有PEEK预制岗位的球形头部设计的恢复牙齿在冠上产生了更加良好的应力分布和可修复的故障模式,在机械和热负荷下,分别是玻璃纤维柱和钛柱。

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