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用于有限元分析研究的人下颌致密骨的弯曲和蠕变特性。

Flexural and creep properties of human jaw compact bone for FEA studies.

作者信息

Vitins V, Dobelis M, Middleton J, Limbert G, Knets I

机构信息

Biomaterials and Biomechanics Specialized Research Institute, Riga Technical University, Kalku iela 1, Rifa, LV-1658, Latvia.

出版信息

Comput Methods Biomech Biomed Engin. 2003 Oct-Dec;6(5-6):299-303. doi: 10.1080/10255840310001637257.

Abstract

The aim of this work was to improve the constitutive model of the human mandible and dentition system by taking into account the non-linear material properties of the structural boney matrix that forms the human jaw bone or mandible. Due to the specific structure of the jaw bone the time dependence of the mechanical properties also forms an important stage of the quantification process. The lack of specific experimental data of this type of material prevents the implementation of these properties into finite element simulations which results in poor quality modelling. Here an attempt was made to determine elastic and viscoelastic mechanical characteristics of the compact bone tissue forming the mandible. The elastic properties of compact bone were determined experimentally from 3 point bending tests and the viscoelastic properties were evaluated from creep tests in compression. A particular human jaw from this complex study was used to reconstruct a geometric model for further numerical experiments.

摘要

这项工作的目的是通过考虑构成人类颌骨或下颌骨的结构性骨基质的非线性材料特性,改进人类下颌骨和牙列系统的本构模型。由于颌骨的特殊结构,力学性能的时间依赖性也是量化过程的一个重要阶段。这类材料缺乏具体的实验数据,无法将这些特性应用于有限元模拟,导致建模质量较差。在此,我们试图确定构成下颌骨的致密骨组织的弹性和粘弹性力学特性。通过三点弯曲试验实验测定致密骨的弹性特性,并通过压缩蠕变试验评估其粘弹性特性。在这项复杂的研究中,选取了一个特定的人类下颌骨来重建几何模型,以进行进一步的数值实验。

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