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Stress distribution of endodontically treated teeth with titanium alloy post and carbon fiber post with different alveolar bone height: A three-dimensional finite element analysis

机译:牙槽骨高度不同的钛合金桩和碳纤维桩对牙髓治疗牙齿的应力分布:三维有限元分析

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Objective:A three-dimensional (3D) finite element analysis (FEA) on the stress distribution of endodontically treated teeth with titanium alloy post and carbon fiber post with different alveolar bone height.Materials and Methods:The 3D model was fabricated using software to represent an endodontically treated mandibular second premolar with post and restored with a full ceramic crown restoration, which was then analyzed using FEA using FEA ANSYS Workbench V13.0 (ANSYS Inc., Canonsburg, Pennsylvania, U.S.A) software.Results:The FEA showed the maximum stresses of 137.43 Mpa in dentin with alveolar bone height of 4 mm when the titanium post was used, 138.48 Mpa when carbon fiber post was used as compared to 105.91 Mpa in the model with alveolar bone height of 2 mm from the cement enamel junction (CEJ) when the titanium post was used and 107.37 Mpa when the carbon fiber post was used.Conclusions:Stress was observed more in alveolar bone height level of 4 mm from CEJ than 2 mm from CEJ. Stresses in the dentin were almost similar when the carbon fiber post was compared to titanium post. However, stresses in the post and the cement were much higher when titanium post was used as compared to carbon fiber post.
机译:目的:对牙槽骨高度不同的钛合金桩和碳纤维桩进行牙髓治疗牙齿的三维三维有限元分析。材料与方法:用软件制作3D模型来表示牙髓治疗后的下颌第二前磨牙,并用全瓷冠修复体修复,然后使用FEA ANSYS Workbench V13.0(ANSYS Inc.,佳能斯堡,宾夕法尼亚州,美国)软件进行FEA分析。结果:FEA显示最大当使用钛桩时,牙本质的应力为137.43 Mpa,牙槽骨高度为4 mm;使用碳纤维桩时,应力为138.48 Mpa,相比之下,距牙釉质接合点2 mm的牙槽骨高度为105.91 Mpa(CEJ结论):从CEJ到4 mm的牙槽骨高度水平比从CEJ到2 mm的肺泡骨高度水平观察到更多的应力。当碳纤维桩与钛桩相比时,牙本质中的应力几乎相似。但是,与碳纤维桩相比,使用钛桩时桩和水泥中的应力要高得多。

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