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根管治疗后下颌第一磨牙高嵌体预备中牙体修复的力学效应

Mechanical effects of foundation restoration on onlay preparations of mandibular first molars after endodontic treatment.

作者信息

Wang Qiuyue, Shi Dongqi, Liu Xiangling, Zhang Weijun, Sun Zhaolun, Feng Yao, Zhang Lingbo

机构信息

Department of Restorative Dentistry, The Second Affiliated Hospital of Harbin Medical University Dental, No. 246 Xuefu Road, Nangang, Harbin, 150000, PR China.

Shenzhen Luohu People's Hospital, Shenzhen, PR China.

出版信息

BMC Oral Health. 2025 Jun 3;25(1):897. doi: 10.1186/s12903-025-06215-8.

Abstract

BACKGROUND

Foundation restorations involve the use of materials such as composite resins to partially restore defective dentin structures. They can be used to simplify the geometry of complex cavities, facilitate restoration insertion, and reduce the polymerization shrinkage of the adhesive. However, the stress distribution of teeth restored after foundation restoration placement is not fully understood.

METHODS

Finite element analysis was used in this study. The purpose was to analyze the stress distribution of onlays with composite resin foundation restorations and to investigate the potential benefits of preserving the remaining dental tissue.A three-dimensional finite element model of a mesial proximal defect of the mandibular first molar after endodontic treatment was established. Four types of onlay restorations (GA and GB: complete-coverage onlay; GC and GD: partial-coverage onlay) were designed using this model. After the models were established, a fixed vertical load of 600 N and an oblique load of 200 N were applied, and the stress distributions were compared between the monolithic ceramic block restorations (GA and GC) and those with foundation restorations (GB and GD). The stress distributions of the onlays and models were also analyzed.

RESULTS

Under vertical loading conditions, GD exhibited higher peak equivalent stress levels in the onlay and adhesive layers. The maximum principal stress experienced by enamel was lower in GB and GD than in GA and GC, whereas it was greater in GB and GD than in GA and GC for the onlay and adhesive layer. Under oblique loading, the peak equivalent stress and maximum principal stress of the adhesive layer and enamel were the lowest in the GB and GD groups.

CONCLUSIONS

Foundation restorations provide good stress dispersion, which can improve the protection of the remaining dental tissue. However, onlay restorations after foundation restoration placement should be used with caution in patients with excessive occlusal forces. Oblique loading was more destructive to the adhesive layer and remaining dental tissue. Complete-coverage restorations have better stress dispersion than partial-coverage restorations.

摘要

背景

基础修复体涉及使用复合树脂等材料来部分修复有缺陷的牙本质结构。它们可用于简化复杂窝洞的几何形状,便于修复体就位,并减少黏结剂的聚合收缩。然而,放置基础修复体后修复牙齿的应力分布尚未完全明确。

方法

本研究采用有限元分析。目的是分析复合树脂基础修复体覆盖体的应力分布,并探讨保留剩余牙体组织的潜在益处。建立了下颌第一磨牙根管治疗后近中邻面缺损的三维有限元模型。使用该模型设计了四种类型的覆盖体修复(GA和GB:全冠覆盖体;GC和GD:部分冠覆盖体)。模型建立后,施加600 N的垂直固定载荷和200 N的斜向载荷,并比较整体陶瓷块修复体(GA和GC)与有基础修复体的修复体(GB和GD)之间的应力分布。还分析了覆盖体和模型的应力分布。

结果

在垂直加载条件下,GD在覆盖体和黏结层中表现出更高的峰值等效应力水平。GB和GD中釉质所承受的最大主应力低于GA和GC,而在覆盖体和黏结层中,GB和GD中的最大主应力大于GA和GC。在斜向加载下,GB和GD组中黏结层和釉质的峰值等效应力和最大主应力最低。

结论

基础修复体能提供良好的应力分散,可改善对剩余牙体组织的保护。然而,对于咬合力过大的患者,放置基础修复体后的覆盖体修复应谨慎使用。斜向加载对黏结层和剩余牙体组织的破坏更大。全冠覆盖修复体比部分冠覆盖修复体具有更好的应力分散。

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