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四壁缺损上颌第一磨牙 1.5mm 高全瓷圈修复的有限元分析:桩核数量及位置

Finite element analysis of maxillary first molar with a 4-wall defect and 1.5-mm-high ferrule restored with fiber-reinforced composite resin posts and resin core: The number and placement of the posts.

机构信息

Graduate student, Department of Prosthodontics, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine; College of Stomatology, Shanghai Jiao Tong University; National Center for Stomatology; National Clinical Research Center for Oral Diseases; Shanghai Key Laboratory of Stomatology, Shanghai, PR China.

Resident, Department of Prosthodontics, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine; College of Stomatology, Shanghai Jiao Tong University; National Center for Stomatology; National Clinical Research Center for Oral Diseases; Shanghai Key Laboratory of Stomatology, Shanghai, PR China.

出版信息

J Prosthet Dent. 2024 Jan;131(1):75-91. doi: 10.1016/j.prosdent.2022.01.029. Epub 2022 Mar 4.

Abstract

STATEMENT OF PROBLEM

Whether fiber-reinforced composite (FRC) posts should be inserted in root canals to restore teeth with multiple roots remains unclear.

PURPOSE

The purpose of this finite element analysis (FEA) study was to determine the optimal use of FRC posts in an endodontically treated maxillary first molar with a 4-wall defect and 1.5-mm-high ferrule.

MATERIAL AND METHODS

Eight different models of a maxillary first molar were established: no post (NP), post in palatal root (P), post in distobuccal root (DB), post in mesiobuccal root (MB), posts in palatal root and distobuccal root (P+DB), posts in palatal root and mesiobuccal root (P+MB), posts in 2 buccal roots (DB+MB), and posts in all roots (P+DB+MB). Two types of loading were applied: a force of 800 N parallel to the long axis of the tooth to simulate the vertical masticatory force and another force of 225 N at 45 degrees to the long axis of the tooth to simulate the lateral masticatory force. The equivalent stresses on the external surfaces of the tooth tissue, the internal surfaces of the root canals and in the posts, as well as the maximal shear stresses on the post-core interface and the core-dentin interface, were calculated with FEA.

RESULTS

All the models showed similar maximal equivalent stress values on the external surfaces of the tooth tissue, and stress concentrations were found at the cervical and furcation area. On the internal surfaces of root canals, an increase of equivalent stress at the middle third of the canals with posts and a decrease at the cervical third were observed. Under vertical loading, the P+DB+MB group showed the largest equivalent stress in the post (76.45 MPa in the palatal post), the DB+MB group showed the largest shear stress on the post-core interface (19.02 MPa), and the MB group showed the largest shear stress on the core-dentin interface (12.07 MPa). Under lateral loading, the P+DB+MB group showed the largest equivalent stress in the post (60.11 MPa in the mesiobuccal post) and the largest shear stress on the post-core interface (13.48 MPa) and the DB group showed the largest shear stress on the core-dentin interface (21.03 MPa).

CONCLUSIONS

One post in the palatal canal was found to be appropriate for the FRC post and resin core restoration of a maxillary first molar with a 4-wall defect and 1.5-mm-high ferrule. An additional post in the mesiobuccal canal could help disperse lateral occlusal force and improve retention of the restoration.

摘要

问题陈述

是否应该在有多根的根管中插入纤维增强复合材料(FRC)桩来修复牙齿仍不清楚。

目的

本有限元分析(FEA)研究的目的是确定在具有 4 壁缺损和 1.5mm 高的金属环的上颌第一磨牙中最佳使用 FRC 桩。

材料和方法

建立了 8 种不同的上颌第一磨牙模型:无桩(NP)、腭根内桩(P)、颊根内桩(DB)、近中颊根内桩(MB)、腭根和颊根内桩(P+DB)、腭根和近中颊根内桩(P+MB)、2 个颊根内桩(DB+MB)和所有根内桩(P+DB+MB)。施加了两种类型的载荷:沿牙齿长轴施加 800N 的力模拟垂直咀嚼力,以及沿牙齿长轴以 45 度角施加 225N 的力模拟侧向咀嚼力。通过有限元分析计算了牙组织外表面、根管内表面和桩内的等效应力,以及桩核界面和核牙本质界面上的最大剪切应力。

结果

所有模型在外表面牙组织上显示出相似的最大等效应力值,在颈部和分叉区域发现了应力集中。在根管内表面,观察到带有桩的根管中三分之一处的等效应力增加,而颈部三分之一处的等效应力减少。在垂直载荷下,P+DB+MB 组的桩内显示出最大的等效应力(腭侧桩为 76.45MPa),DB+MB 组的桩核界面上显示出最大的剪切应力(19.02MPa),MB 组的核牙本质界面上显示出最大的剪切应力(12.07MPa)。在侧向载荷下,P+DB+MB 组的桩内显示出最大的等效应力(近中颊侧桩为 60.11MPa)和桩核界面上的最大剪切应力(13.48MPa),而 DB 组的核牙本质界面上显示出最大的剪切应力(21.03MPa)。

结论

对于具有 4 壁缺损和 1.5mm 高金属环的上颌第一磨牙,发现腭侧根管中的一个桩适合 FRC 桩和树脂核修复。在近中颊侧根管中增加一个桩有助于分散侧向咬合力并提高修复体的固位力。

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