Evaluation of the effect of different rubber dam clamps on the mandibular first molar with Finite element analysis.

IF 1.7 4区 医学 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Mehmet Eskibağlar, Serkan Erdem, Mete Onur Kaman
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引用次数: 0

Abstract

The aim of this study was to evaluate the stress induced by clamps made of different materials on mandibular first molar teeth using finite element analysis. The tooth model to be used in the study was created using micro-CT scanner and the rubber dam clamp model was created in three dimensions (3D) using Solidworks and applied to a finite element tooth model of an intact mandibular first molar. The size of the clamp opening and the force to be applied were calculated according to the buccolingual distances of the tooth. The contact areas of the clamps on the tooth were determined and subjected to force. The stress distribution patterns and maximum von Mises stresses were calculated and compared against these forces. The most stress against these forces occurred in the enamel tissue on the distal side where the clamp was in contact with the tooth. The stress value in the stainless steel clamp (191.63 MPa) was approximately 85% higher than the clamp made of polyethylene ketone (103.85 MPa). The stress in the dentin and pulp tissue of the tooth was negligible. Clinicians should examine the enamel tissue below the equatorial line of the tooth in detail before clamp application. The forces exerted by stainless steel clamps can cause damage to the enamel tissue of the tooth or progression of an existing enamel crack.

通过有限元分析评估不同橡胶坝夹对下颌第一磨牙的影响。
本研究的目的是利用有限元分析评估不同材料制成的夹钳在下颌第一磨牙上引起的应力。研究中使用的牙齿模型是用微型 CT 扫描仪制作的,橡胶坝夹模型是用 Solidworks 制作的三维(3D)模型,并应用于完整下颌第一磨牙的有限元牙齿模型。根据牙齿的颊舌距离计算出夹钳开口的大小和施加的力。确定了夹钳在牙齿上的接触面积,并对其施加了力。计算应力分布模式和最大 von Mises 应力,并与这些力进行比较。在这些力的作用下,夹钳与牙齿接触的远侧珐琅质组织的应力最大。不锈钢牙夹的应力值(191.63 兆帕)比聚乙烯酮牙夹(103.85 兆帕)高出约 85%。牙本质和牙髓组织中的应力可以忽略不计。临床医生在使用夹钳前应详细检查牙齿赤道线以下的珐琅质组织。不锈钢牙夹施加的力可能会对牙齿的珐琅质组织造成损害,或使现有的珐琅质裂纹继续发展。
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
CiteScore
4.10
自引率
6.20%
发文量
179
审稿时长
4-8 weeks
期刊介绍: The primary aims of Computer Methods in Biomechanics and Biomedical Engineering are to provide a means of communicating the advances being made in the areas of biomechanics and biomedical engineering and to stimulate interest in the continually emerging computer based technologies which are being applied in these multidisciplinary subjects. Computer Methods in Biomechanics and Biomedical Engineering will also provide a focus for the importance of integrating the disciplines of engineering with medical technology and clinical expertise. Such integration will have a major impact on health care in the future.
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