...
首页> 外文期刊>Journal of Anatomy >The mechanical function of the periodontal ligament in the macaque mandible: a validation and sensitivity study using finite element analysis.
【24h】

The mechanical function of the periodontal ligament in the macaque mandible: a validation and sensitivity study using finite element analysis.

机译:猕猴下颌骨中牙周膜的机械功能:使用有限元分析进行的验证和敏感性研究。

获取原文
获取原文并翻译 | 示例
           

摘要

Whilst the periodontal ligament (PDL) acts as an attachment tissue between bone and tooth, hypotheses regarding the role of the PDL as a hydrodynamic damping mechanism during intraoral food processing have highlighted its potential importance in finite element (FE) analysis. Although experimental and constitutive models have correlated the mechanical function of the PDL tissue with its anisotropic, heterogeneous, viscoelastic and non-linear elastic nature, in many FE simulations the PDL is either present or absent, and when present is variably modelled. In addition, the small space the PDL occupies and the inability to visualize the PDL tissue using muCT scans poses issues during FE model construction and so protocols for the PDL thickness also vary. In this paper we initially test and validate the sensitivity of an FE model of a macaque mandible to variations in the Young's modulus and the thickness of the PDL tissue. We then tested the validity of the FE models by carrying out experimental strain measurements on the same mandible in the laboratory using laser speckle interferometry. These strain measurements matched the FE predictions very closely, providing confidence that material properties and PDL thickness were suitably defined. The FE strain results across the mandible are generally insensitive to the absence and variably modelled PDL tissue. Differences are only found in the alveolar region adjacent to the socket of the loaded tooth. The results indicate that the effect of the PDL on strain distribution and/or absorption is restricted locally to the alveolar bone surrounding the teeth and does not affect other regions of the mandible.
机译:虽然牙周膜(PDL)充当骨骼和牙齿之间的附着组织,但有关PDL在口腔内食品加工过程中作为流体动力阻尼机制的作用的假说突显了其在有限元(FE)分析中的潜在重要性。尽管实验模型和本构模型已将PDL组织的机械功能与其各向异性,异质性,粘弹性和非线性弹性性质相关联,但在许多有限元模拟中,PDL要么存在,要么不存在,并且在存在时进行可变建模。此外,PDL占用的空间很小,并且无法使用muCT扫描来可视化PDL组织,这在FE模型构建期间造成了问题,因此PDL厚度的协议也有所不同。在本文中,我们首先测试并验证了猕猴FE模型对杨氏模量和PDL组织厚度变化的敏感性。然后,我们通过在实验室中使用激光散斑干涉术对同一下颌骨进行实验应变测量,来测试FE模型的有效性。这些应变测量非常符合有限元预测,从而提供了适当定义材料性能和PDL厚度的信心。整个下颌骨的FE应变结果通常对缺失和模型化的PDL组织不敏感。差异仅在邻近已加载牙齿的牙槽的牙槽区域中发现。结果表明,PDL对应变分布和/或吸收的影响仅限于牙齿周围的牙槽骨,并且不影响下颌骨的其他区域。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号