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两种平面与平面咬合预备设计的机加工陶瓷冠粘结于根管治疗后磨牙的抗折性及三维有限元分析:一项研究

Fracture resistance and 3D finite element analysis of machined ceramic crowns bonded to endodontically treated molars with two planes versus flat occlusal preparation designs: an study.

作者信息

Nabil Omnia, Halim Carl Hany, Mokhtar Ashraf Hassan

机构信息

Department of Fixed Prosthodontics, Faculty of Dentistry, Cairo University, Cairo, 11553, Egypt.

出版信息

F1000Res. 2019 Jul 8;8:1020. doi: 10.12688/f1000research.19455.2. eCollection 2019.

Abstract

The flat occlusal preparation design (FOD) of posterior teeth offers promising results of fracture resistance and stress distribution, but its application in vital teeth is limited as there may be a danger of pulp injury. Although this danger is omitted in endodontically treated teeth, there is no research work assessing the impact of FOD on the fracture resistance and distribution of stresses among these teeth. The aim of this study was to assess the impact of FOD of endodontically treated molars on the fracture resistance and distribution of stresses among a ceramic crown-molar structure when compared to the two planes occlusal preparation design (TOD). 20 human mandibular molars were endodontically treated and distributed equally to two groups: Group I (TOD) and Group II (FOD). Ceramic CAD/CAM milled lithium disilicate (IPS e.max CAD) crowns were produced for all preparations and adhered using self-adhesive resin cement. Using a universal testing machine, the fracture resistance test was performed. The fractured samples were examined using a stereomicroscope and scanning electron microscope to determine modes of failure. Stress distribution was evaluated by 3D finite element analysis, which was performed on digital models of endodontically treated mandibular molars (one model for each design). Group II recorded statistically non-significant higher fracture resistance mean values (3107.2± 604.9 N) than Group I mean values (2962.6 ±524.27 N) as indicated by Student's t-test (t=0.55, p= 0.57). Also, Group II resulted in more favorable failure mode as compared to Group I. Both preparation designs yielded low von-Mises stresses within the factor of safety. However, the stress distribution among different layers of the model differed. FOD having comparable fracture strength to TOD and a more favorable fracture behavior can be used for the preparation of endodontically treated molars.

摘要

后牙的平面咬合预备设计(FOD)在抗折性和应力分布方面显示出良好的结果,但其在活髓牙中的应用受到限制,因为存在牙髓损伤的风险。尽管在根管治疗后的牙齿中这种风险被消除了,但尚无研究评估FOD对这些牙齿抗折性和应力分布的影响。本研究的目的是评估与两平面咬合预备设计(TOD)相比,根管治疗后磨牙的FOD对陶瓷冠 - 磨牙结构抗折性和应力分布的影响。20颗人类下颌磨牙接受根管治疗,并平均分为两组:第一组(TOD)和第二组(FOD)。为所有预备体制作陶瓷计算机辅助设计/计算机辅助制造(CAD/CAM)铣削的二硅酸锂(IPS e.max CAD)全冠,并使用自粘结树脂水门汀粘结。使用万能试验机进行抗折性测试。使用体视显微镜和扫描电子显微镜检查断裂样本,以确定失效模式。通过三维有限元分析评估应力分布,该分析在根管治疗后下颌磨牙的数字模型上进行(每种设计一个模型)。学生t检验表明,第二组的抗折性平均值(3107.2±604.9 N)在统计学上比第一组平均值(2962.6±524.27 N)高,但差异无统计学意义(t = 0.55,p = 0.57)。此外,与第一组相比,第二组产生了更有利的失效模式。两种预备设计在安全系数范围内产生的冯·米塞斯应力都较低。然而,模型不同层之间的应力分布有所不同。与TOD具有相当抗折强度且断裂行为更有利的FOD可用于根管治疗后磨牙的预备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1248/9706151/2df3fc24356a/f1000research-8-56912-g0000.jpg

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