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不同CAD/CAM材料制成的嵌体冠修复根管治疗后磨牙的生物力学评估

Biomechanical Assessment of Endodontically Treated Molars Restored by Endocrowns Made from Different CAD/CAM Materials.

作者信息

Darwich Mhd Ayham, Aljareh Abeer, Alhouri Nabil, Szávai Szabolcs, Nazha Hasan Mhd, Duvigneau Fabian, Juhre Daniel

机构信息

Faculty of Biomedical Engineering, Al-Andalus University for Medical Sciences, Tartous, Syria.

Faculty of Technical Engineering, University of Tartous, Tartous, Syria.

出版信息

Materials (Basel). 2023 Jan 12;16(2):764. doi: 10.3390/ma16020764.

Abstract

The aim of this study was to evaluate the deflection and stress distribution in endodontically treated molars restored by endocrowns from different materials available for the computer-aided design/computer-aided manufacturing (CAD/CAM) technique using three-dimensional finite element analysis. The models represented extensively damaged molars restored by endocrowns from the following materials: translucent zirconia; zirconia-reinforced glass ceramic; lithium disilicate glass ceramic; polymer-infiltrated ceramic network (PICN) and resin nanoceramic. Axial and oblique loadings were applied and the resulting stress distribution and deflection were analyzed. The Mohr-Coulomb (MC) ratio was also calculated in all models. The translucent zirconia endocrown showed the highest stress concentration within it and the least stress in dental structures. The resin nanoceramic model was associated with the greatest stress concentration in dental tissues, followed by the PICN model. Stress was also concentrated in the distal region of the cement layer. The MC ratio in the cement was higher than 1 in the resin nanoceramic model. Oblique loading caused higher stresses in all components and greater displacement than axial loading, whatever the material of the endocrown was. The translucent zirconia model recorded deflections of enamel and dentin (38.4 µm and 35.7 µm, respectively), while resin nanoceramic showed the highest stress concentration and displacement in the tooth-endocrown complex.

摘要

本研究旨在使用三维有限元分析,评估通过计算机辅助设计/计算机辅助制造(CAD/CAM)技术,用不同材料制成的内冠修复的根管治疗后磨牙的挠曲和应力分布。模型代表了用以下材料制成的内冠修复的广泛受损磨牙:半透明氧化锆;氧化锆增强玻璃陶瓷;二硅酸锂玻璃陶瓷;聚合物渗透陶瓷网络(PICN)和树脂纳米陶瓷。施加轴向和斜向载荷,并分析由此产生的应力分布和挠曲。还计算了所有模型中的莫尔-库仑(MC)比率。半透明氧化锆内冠内部的应力集中最高,而牙体结构中的应力最小。树脂纳米陶瓷模型在牙体组织中的应力集中最大,其次是PICN模型。应力也集中在粘结层的远中区域。在树脂纳米陶瓷模型中,粘结剂中的MC比率高于1。无论内冠材料如何,斜向载荷在所有部件中引起的应力和位移都比轴向载荷更高。半透明氧化锆模型记录的釉质和牙本质挠曲分别为38.4 µm和35.7 µm,而树脂纳米陶瓷在牙体-内冠复合体中显示出最高的应力集中和位移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a965/9864025/a28a14f088eb/materials-16-00764-g001.jpg

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