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一次性根管全冠固定义齿:是否可行?

One-piece endodontic crown fixed partial denture: Is it possible?

机构信息

Assistant Professor, Department of Oral Regenerative Medicine, Academic Centre for Dentistry Amsterdam (ACTA), Universiteit van Amsterdam and Vrije Universiteit, Amsterdam, the Netherlands.

Assistant Professor, Department of Dental Materials Science, Academic Centre for Dentistry Amsterdam (ACTA), Universiteit van Amsterdam and Vrije Universiteit, Amsterdam, the Netherlands.

出版信息

J Prosthet Dent. 2024 Jun;131(6):1118-1125. doi: 10.1016/j.prosdent.2023.01.014. Epub 2023 Feb 16.

Abstract

STATEMENT OF PROBLEM

Whether the replacement of a missing tooth with a fixed partial denture supported by an endodontically treated abutment could be improved with 1-piece endodontic crowns is unclear.

PURPOSE

The purpose of the study was to evaluate the mechanical behavior of a fixed partial denture (FPD) according to the preparation of the abutment teeth (1-piece endodontic crown or complete crown) in terms of stress magnitude in the prosthesis, cement layer, and tooth.

MATERIAL AND METHODS

A posterior model with 2 abutment teeth (first molar and first premolar) was modeled with a computer-aided design (CAD) software program for conducting a 3-dimensional finite element analysis (FEA). To replace the missing second premolar, the model was replicated in different possible FPDs according to the abutment preparation design (complete crown [Conventional], 2 1-piece endodontic crowns [EC]) or a 1-piece endodontic crown on one of the abutment teeth (first molar [ECM] and first premolar [ECP]) for a total of 4 designs. All FPDs were in lithium disilicate. The solids were imported to an analysis software program (ANSYS 19.2) in the standard for the exchange of product data (STEP) format. The mechanical properties were considered isotropic and the materials to show linear elastic and homogeneous behavior. An axial load (300 N) was applied at the occlusal surface of the pontic. The results were evaluated by colorimetric stress maps of von Mises and maximum principal stress in the prosthesis, maximum principal stress and shear stresses on the cement layer, and maximum principal stress in the abutment teeth.

RESULTS

The von Mises stresses revealed that all FPD designs behaved similarly and that, considering the maximum principal stress criteria, the pontic was the most stressed region. For the cement layer, the combined designs presented an intermediate behavior, with the ECM more suitable to reducing the stress peak. The conventional preparation allowed less stress concentration in both teeth, and higher stress concentration in the premolar was observed with a 1-piece endodontic crown. The 1-piece endodontic crown decreased the risk of fracture failure. Considering the risk of debonding failure for the prosthesis, the 1-piece endodontic crown preparation was only able to decrease the failure risk when the EC design was used and when only the shear stress was considered.

CONCLUSIONS

Performing 1-piece endodontic crown preparations to retain a 3-unit lithium disilicate FPD is an alternative to conventional complete crown preparations.

摘要

问题陈述

用根管治疗后的基牙支持的固定局部义齿(FPD)修复缺失牙,用 1 件式根管全冠替代是否能改善,目前尚不清楚。

目的

本研究的目的是评估在基牙预备(1 件式根管全冠或全冠)方面,根据义齿的受力大小,评估 FPD 的机械性能,包括义齿、粘固层和基牙。

材料和方法

用计算机辅助设计(CAD)软件程序对一个带有 2 个基牙(第一磨牙和第一前磨牙)的后牙模型进行建模,进行三维有限元分析(FEA)。为了替代缺失的第二前磨牙,根据基牙预备设计(全冠[常规]、2 个 1 件式根管全冠[EC])或一个基牙上的 1 件式根管全冠(第一磨牙[ECM]和第一前磨牙[ECP])复制模型,共设计 4 种 FPD。所有 FPD 均为锂硅玻璃陶瓷。将实体导入分析软件程序(ANSYS 19.2),以标准产品数据交换格式(STEP)。力学性能为各向同性,材料呈线性弹性和均匀性。在桥体的咬合面施加 300 N 的轴向载荷。通过 von Mises 彩色等效应力图和义齿的最大主应力、粘固层的最大主应力和剪切应力以及基牙的最大主应力来评估结果。

结果

von Mises 应力表明,所有 FPD 设计的行为相似,考虑到最大主应力标准,桥体是最受力的区域。对于粘固层,组合设计表现出中等行为,ECM 更适合降低应力峰值。常规制备使两颗基牙的应力集中程度降低,而 1 件式根管全冠使前磨牙的应力集中程度增加。1 件式根管全冠降低了骨折失效的风险。考虑到义齿的脱粘失效风险,只有在使用 EC 设计且仅考虑剪切应力时,1 件式根管全冠制备才能降低失效风险。

结论

对 3 单位的玻璃陶瓷 FPD 进行 1 件式根管全冠预备,是常规全冠预备的替代方法。

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