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不同洞型设计和 CAD-CAM 材料的内冠修复体在静态和垂直载荷下的生物力学行为:有限元分析。

Biomechanical behavior of endocrown restorations with different cavity design and CAD-CAM materials under a static and vertical load: A finite element analysis.

机构信息

Graduate student, School of Dentistry, Tehran University of Medical Sciences, Tehran, Iran.

Professor, Department of Prosthodontics, Dental Research Center, Dentistry Research Institute, School of Dentistry, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

J Prosthet Dent. 2022 Apr;127(4):600.e1-600.e8. doi: 10.1016/j.prosdent.2021.11.027. Epub 2022 Jan 10.

Abstract

STATEMENT OF PROBLEM

The influence of different restorative materials, the divergence angle, and the preparation design of the pulp chamber floor in endocrowns on stress distribution is unclear.

PURPOSE

The purpose of this finite element analysis study was to evaluate the stress distribution and maximum von Mises stress values in endocrown restorations and remaining teeth.

MATERIAL AND METHODS

An endodontically treated first mandibular molar was prepared with 2-mm occlusal reduction, a butt-joint margin, and a mesial box with a 4-mm buccolingual extension to receive an endocrown restoration. The model was then scanned, and the exported standard tessellation language file was designed according to the anatomic references by using a computer-aided design software program. The reference model was duplicated, and 27 variations were formed: restorations made of IPS e.max, Vitablocs MarkII, and Vita Enamic, as well as different divergence angles of 6, 12, and 16 degrees prepared with 3 variations of pulp chamber floor designs, keeping the natural form, adding a 1-mm glass ionomer pulp chamber base, and adding a 2-mm extension into the distal canal. Stress distribution under axial loading and maximum von Mises stress values were analyzed and calculated by using the Ansys software program.

RESULTS

The endocrown restoration presented the lowest von Mises stress values when a 6-degree divergence angle was used with Vitablocs MarkII. However, in other layers such as enamel, resin cement, and pulpal floor, the lowest von Mises stress values were observed in IPS e.max restorative material when the divergence angle was increased to 16 degrees. No difference was found in the stress distribution pattern and maximum von Mises stress values in the alveolar bone or periodontal ligament.

CONCLUSIONS

Endocrowns fabricated with lithium disilicate ceramics without intraradicular extension exhibited lower stresses on tooth structure. An increase in the divergence angle improved the stress distribution on tooth structure; however, sound dental tissue should not be removed to achieve better stress distribution.

摘要

问题陈述

不同修复材料、牙髓室底的制备设计对髓腔顶的发散角度对牙体组织的应力分布的影响尚不清楚。

目的

本有限元分析研究的目的是评估髓腔全冠修复体和剩余牙体的应力分布和最大 von Mises 应力值。

材料和方法

对一颗下颌第一磨牙进行根管治疗,牙体预备 2mm 颌面,颊舌向 4mm 箱型,近中延伸 2mm,预备体采用髓腔顶全冠修复。模型扫描后,采用计算机辅助设计软件,根据解剖学参考设计标准 tessellation language 文件。复制参考模型,形成 27 个变异体:IPS e.max、Vitablocs MarkII 和 Vita Enamic 三种修复材料,6、12 和 16 度三种发散角度,牙髓室底设计有三种变异体,保留自然形态,添加 1mm 玻璃离子体牙髓室基底,向远中延伸 2mm。采用 Ansys 软件分析和计算轴向载荷下的应力分布和最大 von Mises 应力值。

结果

当使用 Vitablocs MarkII 时,6 度发散角的髓腔全冠修复体表现出最低的 von Mises 应力值。然而,在其他层如牙釉质、树脂水门汀和牙髓室底,当发散角增加到 16 度时,IPS e.max 修复材料的 von Mises 应力值最低。牙槽骨或牙周膜的应力分布模式和最大 von Mises 应力值没有差异。

结论

不带有根管内延伸的锂硅二酸盐陶瓷制作的髓腔全冠对牙体组织的应力较小。增加发散角可改善牙体组织的应力分布,但不应为了改善应力分布而去除健康的牙体组织。

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