首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Influence of Ferrule, Post System, and Length on Stress Distribution of Weakened Root-filled Teeth
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Influence of Ferrule, Post System, and Length on Stress Distribution of Weakened Root-filled Teeth

机译:套圈,接杆系统和长度对弱牙充盈牙齿应力分布的影响

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Introduction: The aim of this study was to evaluate-the influence of a ferrule, post system, and length on the stress distribution of weakened root-filled teeth. Methods: The investigation was conducted by using 3-dimensional (3D) finite element analysis. A sound tooth and 8 3D models of a weakened root-filled central incisor were generated using computer-aided design/computer-aided manufacturing software. The models were created without a ferrule and with a 2.0-mm ferrule, restored with a relined glass fiber post or a cast post and core (Cpc), and 12.0- and 7,0-mm post lengths. Each 3D model was imported using *.STEP files to the finite element software for mesh generation. The models were subjected to 100-N oblique loading at the palatal surface, and the results were evaluated by von Mises criterion and maximum principal stress distribution. Results: Finite element analysis showed that the Cpc models showed elevated stress levels in the root canal regardless of the presence of a ferrule. Relined glass fiber post models showed homogeneous stress distribution to the dentin external surface similar to the sound tooth model. Without a ferrule, Cpc with a 7- or 12-mm length promoted high levels of tensile stress inside the root canal. Conclusions: Ferrule presence promoted More satisfactory stress distribution to the roots. Post length influenced the stress distribution only for the models restored with a cast post and core. High levels of tensile stress inside the root canals were verified with a cast post and core, which should be avoided to rehabilitate weakened roots, mainly in the absence of a ferrule.
机译:简介:这项研究的目的是评估套圈,牙柱系统和牙长对弱牙根充填牙齿应力分布的影响。方法:使用3D(3D)有限元分析进行调查。使用计算机辅助设计/计算机辅助制造软件生成了弱牙根填充中切牙的健全牙齿和8个3D模型。创建的模型没有套圈,但带有2.0毫米的套圈,并用带衬里的玻璃纤维桩或铸件的柱芯(Cpc)以及12.0和7,0毫米的柱长进行了修复。使用* .STEP文件将每个3D模型导入到有限元软件中以进行网格生成。对模型在the表面施加100 N斜向载荷,并根据von Mises准则和最大主应力分布评估结果。结果:有限元分析表明,无论是否存在套圈,Cpc模型均显示出根管内应力水平升高。倾斜的玻璃纤维桩模型显示出均匀的应力分布到牙本质外表面,类似于声牙模型。如果没有套圈,长度为7或12毫米的Cpc会在根管内促进高水平的拉应力。结论:套圈的存在促进了更令人满意的根部应力分布。立柱长度仅对使用铸造立柱和型芯恢复的模型影响应力分布。根管内的高水平拉应力已通过浇铸柱和芯进行了验证,应避免这种情况,以修复弱化的根,主要是在没有套圈的情况下。

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