臼齿
冯·米塞斯屈服准则
断裂(地质)
有限元法
材料科学
口腔正畸科
牙科
下颌磨牙
下颌第一磨牙
仪表(计算机编程)
医学
复合材料
结构工程
计算机科学
工程类
操作系统
作者
Martin Vorster,Dewald Z. Gravett,Peet J Van der Vyver,George Markou
标识
DOI:10.1016/j.joen.2023.03.004
摘要
INTRODUCTION: This study evaluated the effect of traditional and conservative endodontic access cavity designs in combination with WaveOne Gold and TruNatomy instrumentation systems on the fracture resistance of mandibular first molars by means of nonlinear finite element analysis (FEA). METHODS: Micro-CT images of 4 human mandibular first molars were used to generate representative FEA models. The mandibular first molars samples were scanned before and after endodontic access cavity preparation and instrumentation of all 3 canals. Five nonlinear static loads were applied vertically and horizontally to specific contact points on the occlusal surface of the teeth. Maximum von Mises stress before failure and distribution of von Mises strains were recorded and compared between groups. RESULTS: Molars with conservative endodontic access cavities required similar levels of loads to reach failure compared with their control samples, whereas molars with traditional endodontic access cavities required significantly reduced loads in order to fail. According to the numerical investigation, the type of instrumentation system was found to have an insignificant effect on the fracture resistance of the teeth under study. Von Mises stress was concentrated around the cervical region and in the larger distal roots for all numerical models. CONCLUSIONS: The fracture resistance of mandibular first molars is influenced significantly by a reduction in dental hard tissue, which was found to control the level of the ultimate failure load for each tooth.
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