Structural response of mandibular first molars in the presence of proximal contacts: finite element analysis with antagonist teeth and alternative loading applications.

IF 3.1 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
Saúl Dorado, Jesús R Jimenez-Octavio, Paula Riaza, Ove A Peters, Ana Arias
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引用次数: 0

Abstract

Objectives: To compare the mechanical responses of a mandibular molar under functional loads using antagonist teeth and different loading applications and configurations.

Methods: A cone-beam computed tomography of a human mandible and maxilla was used to build 16 different three-dimensional models, including four mandibular configurations [single-tooth model (first mandibular molar-M), and inclusion of mesial (mM), distal (Md) or both proximal contacts (mMd)] and occlusal load applications either with antagonist teeth or alternative Finite Element (FE) models [point load (PL), distributed surface load (SL) and rigid metal sphere (MS)]. FE analysis was performed. Equivalent von Mises (VM) stress was calculated along the entire dentin and periodontal ligament of the first mandibular molar. Maximum VM stresses were compared among the different mandibular configurations and loading applications.

Results: The highest and lowest VM stress at 50 and 100 N corresponded respectively to the single-tooth SL model (5.78 and 11.5 MPa) and to occlusal load application with antagonist teeth and proximal contacts (2.08 and 3.58 MPa). Maximum VM stresses were consistently located at the cervical area of the mesial root and decreased when adjacent teeth were present.

Conclusions: Highest stresses are located in the cervical area of the mesial root of mandibular molars, but the biomechanical behavior depends on the presence of proximal contacts and the loading methodologies used. Single-tooth models represent the worst structural scenario.

Clinical relevance: Incorporating antagonist teeth and proximal contacts into FE models enhances the biofidelity of dental biomechanics simulations, enabling more accurate extrapolation to clinical conditions.

下颌第一磨牙在近端接触时的结构反应:具有拮抗牙和替代载荷应用的有限元分析。
目的:比较使用拮抗剂牙和不同载荷应用和配置下下颌磨牙在功能载荷下的力学反应。方法:使用人类下颌骨的锥形梁计算机断层扫描建立16种不同的三维模型,包括四种下颌结构[单齿模型(第一下颌磨牙- m),包括近端(mM),远端(Md)或近端接触(mMd)]和咬合负荷应用,包括拮抗剂牙或替代有限元(FE)模型[点载荷(PL),分布表面载荷(SL)和刚性金属球(MS)]。进行FE分析。计算沿第一磨牙全牙本质和牙周韧带的等效von Mises (VM)应力。比较了不同下颌结构和载荷作用下的最大VM应力。结果:在50和100 N时,VM应力最高和最低分别对应于单牙SL模型(5.78和11.5 MPa)和拮抗牙与近端接触者的咬合负荷(2.08和3.58 MPa)。最大VM应力始终位于中牙根的颈椎区域,当邻近牙齿存在时,VM应力减小。结论:最大应力位于下颌磨牙近中根的颈椎区域,但生物力学行为取决于近端接触的存在和使用的加载方法。单齿模型代表了最坏的结构情况。临床相关性:将拮抗剂牙齿和近端接触纳入FE模型可以增强牙齿生物力学模拟的生物保真度,从而更准确地推断临床情况。
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
Clinical Oral Investigations
Clinical Oral Investigations 医学-牙科与口腔外科
CiteScore
6.30
自引率
5.90%
发文量
484
审稿时长
3 months
期刊介绍: The journal Clinical Oral Investigations is a multidisciplinary, international forum for publication of research from all fields of oral medicine. The journal publishes original scientific articles and invited reviews which provide up-to-date results of basic and clinical studies in oral and maxillofacial science and medicine. The aim is to clarify the relevance of new results to modern practice, for an international readership. Coverage includes maxillofacial and oral surgery, prosthetics and restorative dentistry, operative dentistry, endodontics, periodontology, orthodontics, dental materials science, clinical trials, epidemiology, pedodontics, oral implant, preventive dentistiry, oral pathology, oral basic sciences and more.
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