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上颌中切牙抗折强度的影响因素:有限元研究。

Influence of Access Cavities on Maxillary Central Incisor Fracture Resistance: Finite Element Study.

机构信息

Hospital of Stomatology, Jilin University, Changchun, PR China.

Hospital of Stomatology, Jilin University, Changchun, PR China.

出版信息

Int Dent J. 2024 Dec;74(6):1248-1257. doi: 10.1016/j.identj.2024.04.017. Epub 2024 May 1.

Abstract

INTRODUCTION AND AIMS

Altering the position and orientation of the root canal access cavity passway, or modifying the reduction of dentin volume, can influence the strength of dentition. This study aimed to compare the effects of different access cavities on the biomechanical performances of maxillary central incisors with a finite element analysis.

METHODS

Based on the micro-computed tomography (CT) scan of a maxillary central incisor, the finite element models of the intact tooth and teeth with 4 access cavity designs: conservative incisal access cavity, incisal access cavity, conservative access cavity, and traditional access cavity were generated. Simulated occlusal forces were applied at the incisal edge of the incisor in the finite element analysis procedure.

RESULTS

The maximum von Mises stress and maximum principal stress in the cervical area are highest in the traditional access cavity group, followed by the conservative access cavity group, incisal access cavity group, and conservative incisal access cavity group.

CONCLUSION

The conservative access cavities minimise the extent of dentin removal from the cervical region, protecting the mechanical behaviour of the incisor. Moving the access cavity entry point to the incisal edge also improves the fracture resistance of the incisor.

CLINICAL RELEVANCE

This study's findings would help clinicians select the most appropriate endodontics access cavity method when performing the root canal on maxillary central incisors.

摘要

介绍和目的

改变根管入口通道的位置和方向,或修改牙本质体积的减少,可能会影响牙齿的强度。本研究旨在通过有限元分析比较不同入口腔对上颌中切牙生物力学性能的影响。

方法

基于上颌中切牙的微计算机断层扫描(CT),生成了完整牙齿和 4 种入口腔设计的牙齿的有限元模型:保守切缘入口腔、切缘入口腔、保守入口腔和传统入口腔。在有限元分析过程中,在切缘处模拟施加了模拟的咬合力量。

结果

在传统入口腔组中,颈区的最大 von Mises 应力和最大主应力最高,其次是保守入口腔组、切缘入口腔组和保守切缘入口腔组。

结论

保守入口腔最大限度地减少了颈部牙本质的去除量,保护了切牙的机械性能。将入口腔入口点移动到切缘也可以提高切牙的抗裂性。

临床相关性

本研究的结果将有助于临床医生在对上颌中切牙进行根管治疗时选择最合适的牙髓腔入口方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16d2/11551575/1048e2d9d145/gr1.jpg

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