A three-dimensional finite element analysis of stress distribution in maxillary central incisor with a horizontal mid root fracture after various management protocols.

Kavitha Anantula, Bhavana Vankayala, Sarjeev Singh Yadav
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Abstract

Context: The incidence of root fractures is about 1.2%-7% in permanent teeth and horizontal mid root fractures are most common in maxillary anteriors.

Aims: This study aims to evaluate the stress distribution in a maxillary central incisor with mid root fracture after various management protocols using three-dimensional finite element (FE) analysis.

Materials and methods: Four three dimensional FE models were constructed: Model 1-Normal tooth, Model 2-tooth with horizontal mid root fracture, Model 3-tooth with horizontal mid root fracture, coronal fragment filled with Biodentine, and access cavity sealed with composite resin cement and apical fragment left untreated and Model 4-tooth with horizontal mid root fracture restored with intraradicular fiber post as a splint and access cavity sealed with composite resin cement. The properties of materials were assigned and a force of 100 N was applied at 45° angle to the longitudinal axis of the tooth onto the palatal surface incisal to the cingulum.

Statistical analysis: Von-Mises stress along the length of the root analyzed and compared.

Results: The maximum stress distribution was observed at the palatal end of the coronal radicular fragment in both without treatment and with biodentine treatment. The stress distribution was concentrated more at the junction of the splinted area in the intraradicular fiber post splinted model.

Conclusions: The model with intraradicular fiber post as a splint exhibited more stress concentration at the splinted area due to bending forces. These stresses may adversely affect the healing around the fracture site and affect the longevity.

对上颌中切牙水平中根骨折在不同处理方案后的应力分布进行三维有限元分析。
背景:目的:本研究旨在通过三维有限元(FE)分析,评估一颗上颌中切牙中根折裂的应力分布情况:构建了四个三维有限元模型:模型 1--正常牙齿;模型 2--水平中根折断的牙齿;模型 3--水平中根折断的牙齿,冠状片用 Biodentine 填充,并用复合树脂水门汀密封通路,根尖片不处理;模型 4--水平中根折断的牙齿,用关节内纤维桩作为夹板修复,并用复合树脂水门汀密封通路。对材料的特性进行分配,并以与牙齿纵轴成 45° 角的方式向腭侧切面至龈沟施加 100 N 的力:统计分析:对牙根长度方向的 Von-Mises 应力进行分析和比较:结果:在未经处理和使用生物水泥处理的情况下,最大应力分布在冠状根切片的腭端。结论:结论:使用关节内纤维支柱作为夹板的模型由于弯曲力的作用,在夹板区域表现出更多的应力集中。这些应力可能会对骨折部位周围的愈合产生不利影响,并影响使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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