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首页> 外文期刊>Communications in Numerical Methods in Engineering >A porous fibrous hyperelastic damage model for human periodontal ligament: Application of a microcomputerized tomography finite element model
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A porous fibrous hyperelastic damage model for human periodontal ligament: Application of a microcomputerized tomography finite element model

机译:一种用于人牙周韧带的多孔纤维状高速损伤模型:微型电机层析成像有限元模型的应用

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摘要

The periodontal ligament (PDL) is a soft biological tissue that connects the tooth with the trabecular bone of the mandible. It plays a key role in load transmission and is primarily responsible for bone resorption and most common periodontal diseases. Although several numerical studies have analysed the biomechanical response of the PDL, most did not consider its porous fibrous structure, and only a few analysed damage to the PDL. This study presents an innovative numerical formulation of a porous fibrous hyperelastic damage material model for the PDL. The model considers two separate softening phenomena: fibre alignment during loading and fibre rupture. The parameters for the material model characterization were fitted using experimental data from the literature. Furthermore, the experimental tests used for characterization were computationally modelled to verify the material parameters. A finite element model of a portion of a human mandible, obtained by microcomputerized tomography, was developed, and the proposed constitutive model was implemented for the PDL. Our results confirm that damage to the PDL may occur mainly because of overpressure of the interstitial fluid, while large forces must be applied to damage the PDL fibrous network. Moreover, this study clarifies some aspects of the relationship between PDL damage and the bone remodelling process.
机译:牙周韧带(PDL)是柔软的生物组织,其将牙齿与下颌骨的牙齿连接。它在负载传输中起着关键作用,主要负责骨吸收和最常见的牙周病。虽然若干数值研究已经分析了PDL的生物力学响应,但大多数人都没有考虑其多孔纤维结构,并且只对PDL的损伤仅少量分析。本研究提出了一种用于PDL多孔纤维状损伤材料模型的创新数值配方。该模型考虑了两个单独的软化现象:装载期间的纤维对准和纤维破裂。使用来自文献的实验数据配合了材料模型表征的参数。此外,用于表征的实验测试是计算建模以验证材料参数。开发了通过微计算机化断层扫描获得的一部分人的细胞内容的有限元模型,并为PDL实施了所提出的本构模型。我们的结果证实,PDL的损坏主要是由于间质液的过度压力,而必须施加大的力来损坏PDL纤维网络。此外,该研究阐明了PDL损伤与骨重塑过程之间关系的一些方面。

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