Assessment of heat transfer to periodontal tissues and stress distribution in a tooth with simulated internal resorption cavities at different root levels using two thermoplasticized obturation systems – A finite element analysis study

Q3 Dentistry
Vibha R Hegde, P. Jain, Pooja Bhagat
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引用次数: 0

Abstract

Aim: This study aimed to evaluate the heat transfer to periodontal tissues and stress distribution within simulated roots with internal root resorption cavities at three different levels using two thermoplasticized obturation systems using finite element analysis. Methods: Maxillary central incisors with single canals were chosen for the construction of the simulation and geometric models. Cone beam computed tomography scan of a skull was used to model the periodontal ligament and alveolar bone. Construction of the simulating model and geometric model and conversion to finite element model was conducted with three-dimensional tetrahedral elements at three different levels. These three models were duplicated for stress distribution and heat transfer analysis during the down packing and backfilling procedure to periodontal tissues. A simulation of root canal preparation and obturation procedures was conducted using ANSYS 19.2 software, and static structural, steady-state thermal, and transient analysis were carried out. Results: The total average stress was the highest when the resorption cavity was in the middle third (1.72 Mpa) for the calamus dual obturation system. The total average temperature observed was the highest when the resorption cavity was in the middle third (37.4°C) for the elements free obturation system and in the apical third (53.73°C) for the calamus dual obturation system. Conclusion: It was observed that between the two systems, elements free obturation system led to lower heat transfer and heat flux during the down packing procedure in comparison to the calamus dual obturation system, and the remaining dentin thickness was directly proportional to the amount of heat transferred to the surrounding tissues.
使用两种热塑化封闭系统在不同牙根水平模拟内吸收腔的牙齿中评估牙周组织的热传递和应力分布-一项有限元分析研究
目的:利用有限元分析方法,研究两种热塑化充填系统对牙周组织的热传递和模拟牙根内吸收腔在三个不同水平上的应力分布。方法:选择单根管上颌中切牙建立模拟模型和几何模型。锥形束计算机断层扫描颅骨被用来模拟牙周韧带和牙槽骨。以三维四面体为单元,分三个层次建立仿真模型和几何模型,并转换为有限元模型。在牙周组织充填和回填过程中,对这三个模型进行了应力分布和传热分析。采用ANSYS 19.2软件模拟根管预备和充填过程,进行静态结构分析、稳态热分析和瞬态分析。结果:菖蒲双孔封闭系统在吸收腔中三分之一处总平均应力最大(1.72 Mpa)。无元素封闭系统吸收腔位于中间三分之一(37.4°C),菖蒲双封闭系统吸收腔位于顶端三分之一(53.73°C)时,总平均温度最高。结论:两种封闭系统中,无元素封闭系统在充填过程中的传热和热流密度较菖蒲双封闭系统低,剩余牙本质厚度与向周围组织传递的热量成正比。
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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来源期刊
Endodontology
Endodontology Medicine-Anatomy
CiteScore
0.60
自引率
0.00%
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0
审稿时长
28 weeks
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