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建模简化对颅面有限元模型的影响:牙槽(牙腔)和牙周韧带。

The effects of modeling simplifications on craniofacial finite element models: the alveoli (tooth sockets) and periodontal ligaments.

机构信息

Department of Mechanical and Industrial Engineering, University of Massachusetts Amherst, 160 Governor's Drive, Amherst, MA 01003, USA.

出版信息

J Biomech. 2011 Jul 7;44(10):1831-8. doi: 10.1016/j.jbiomech.2011.03.022. Epub 2011 May 17.

Abstract

Several finite element models of a primate cranium were used to investigate the biomechanical effects of the tooth sockets and the material behavior of the periodontal ligament (PDL) on stress and strain patterns associated with feeding. For examining the effect of tooth sockets, the unloaded sockets were modeled as devoid of teeth and PDL, filled with teeth and PDLs, or simply filled with cortical bone. The third premolar on the left side of the cranium was loaded and the PDL was treated as an isotropic, linear elastic material using published values for Young's modulus and Poisson's ratio. The remaining models, along with one of the socket models, were used to determine the effect of the PDL's material behavior on stress and strain distributions under static premolar biting and dynamic tooth loading conditions. Two models (one static and the other dynamic) treated the PDL as cortical bone. The other two models treated it as a ligament with isotropic, linear elastic material properties. Two models treated the PDL as a ligament with hyperelastic properties, and the other two as a ligament with viscoelastic properties. Both behaviors were defined using published stress-strain data obtained from in vitro experiments on porcine ligament specimens. Von Mises stress and strain contour plots indicate that the effects of the sockets and PDL material behavior are local. Results from this study suggest that modeling the sockets and the PDL in finite element analyses of skulls is project dependent and can be ignored if values of stress and strain within the alveolar region are not required.

摘要

几种灵长类颅骨的有限元模型被用于研究牙窝的生物力学效应以及牙周韧带(PDL)的材料行为对与进食相关的应力和应变模式的影响。为了研究牙窝的影响,将空载牙窝建模为无牙和无牙周韧带,填充有牙和牙周韧带,或者仅填充皮质骨。颅骨左侧的第三磨牙被加载,PDL 被视为各向同性、线弹性材料,使用发表的杨氏模量和泊松比值。其余模型以及一个牙窝模型被用于确定 PDL 的材料行为对静态前磨牙咬合和动态牙齿加载条件下的应力和应变分布的影响。两个模型(一个静态和另一个动态)将 PDL 视为皮质骨。另外两个模型将其视为具有各向同性、线弹性材料特性的韧带。两个模型将 PDL 视为具有超弹性特性的韧带,另外两个模型将 PDL 视为具有粘弹性特性的韧带。这两种行为都是使用从猪韧带标本的体外实验中获得的已发表的应力-应变数据来定义的。冯·米塞斯(von Mises)应力和应变等高线图表明,牙窝和 PDL 材料行为的影响是局部的。本研究的结果表明,在颅骨的有限元分析中对牙窝和 PDL 进行建模取决于项目,如果不需要牙槽区域内的应力和应变值,则可以忽略。

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