Numerical modeling of the edentulous mandible with different mucosa thickness and resiliency using multiblock method

M. Blagojevic, J. Eric, M. Zivkovic, Ljiljana D. Tihacek Sojic
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Abstract

In spite of numerous studies on biomechanics of the mucous membrane supported dentures, satisfactory determination of the mucous membrane loads is still lacking. The aim of this study was to evaluate the effect of different mucosa thickness and resiliency on stress distribution of complete denture using a three-dimensional finite element analysis. A edentulous mandible with complete denture was converted into a numerical model based on 3D measurements performed by an advanced topometric sensor digitizer (ATOS). This model was transformed into the desired coordinate system and resilient layers were modeled. In each group, mucosa assumed three characteristics of thickness (1, 3 and 5 mm) corresponding to the resiliencies hard, resilient and soft respectively. Evaluation was performed on NASTRAN software with 300N vertical load applied on central incisor teeth. The analyses were based on the maximum and minimum principal stress and displacement values in the supporting tissues. In this study, it was observed that stress decreased at the supporting tissues as mucosa thickness and resiliency increased. The total displacement values increased as the thickness and resiliency of mucosa increased for all structures. Based on the numerical results, the maximum stress values were concentrated in cortical bone.
不同黏膜厚度和弹性的无牙下颌骨多块法数值模拟
尽管对粘膜义齿的生物力学进行了大量的研究,但仍缺乏令人满意的粘膜载荷测定。本研究采用三维有限元分析方法,探讨不同黏膜厚度和弹性对全口义齿应力分布的影响。采用先进的地形测量传感器数字化仪(ATOS)将无牙下颌全口义齿的三维测量数据转换为数值模型。将该模型转换为所需坐标系,并对弹性层进行建模。各组粘膜分别具有1、3、5 mm的三种厚度特征,分别对应于弹性:硬、弹性:软。采用NASTRAN软件对中切牙施加300N垂直载荷进行评价。分析是基于最大和最小的主应力和位移值的支持组织。本研究发现,随着粘膜厚度和弹性的增加,支持组织的应激降低。所有结构的总位移值随粘膜厚度和弹性的增加而增加。数值结果表明,最大应力值集中在皮质骨。
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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