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Effect of Loading Direction, Crown Coverage, and Adjacent Teeth on Stresses in Post-Restored Premolars

机译:装载方向,冠覆盖和相邻牙齿对恢复后磨牙后胁迫的影响

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摘要

The aims of this finite elemental stress analysis (FEA) study were to evaluate the effects of loading direction, crown coverage, and adjacent teeth on stress distribution in premolar tooth models restored using fiber-post restoration. Three 3D premolar tooth FEA models were created as follows: Model 1: sound tooth; Model 2: tooth-model including root filling, fiber-post and composite resin restoration; Model 3: tooth-model including root filling, fiber-post, composite resin core and ceramic crown. Three more models were created using Models 1, 2, and 3 with adjacent teeth (Models 4, 5, and 6). The Cosmoworks structural-analysis program was used for the stress analysis, which was based on the von Mises criterion. High stress concentrations were observed at the mesial side of the sound tooth models while the stresses were localized at both sides in the others. Loading with a nonzero inclination angle caused higher stress concentrations within the tooth structure than is other models with the normal/vertical loading. The presence of adjacent teeth strongly influenced stress distributions and concentrations in Models 4, 5, and 6, reducing the stress level. Meanwhile, crown restoration did not change the stress patterns.
机译:该有限元应力分析(FEA)研究的目的是评估装载方向,冠覆盖和相邻齿对使用纤维恢复恢复的磨牙牙齿模型中的应力分布的影响。三维磨牙牙齿FEA模型如下:1:声牙; 2:牙齿模型,包括根填充,纤维柱和复合树脂恢复; 3型:牙齿模型包括根填充,纤维柱,复合树脂芯和陶瓷冠。使用具有相邻齿的型号1,2和3创建三种型号(型号4,5和6)。 COSMOWorks结构分析程序用于应力分析,基于VON MISES标准。在声齿模型的间隔侧观察到高应力浓度,同时应力在其他方面局部化。用非零倾斜角加载导致牙齿结构内的应力浓度高于具有正常/垂直装载的其他模型。相邻牙齿的存在强烈影响了模型4,5和6中的应力分布和浓度,降低了应力水平。同时,皇冠恢复没有改变应力模式。

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