Department of Archaeology, University of York, York YO10 5DD, UK.
J Biomech. 2011 Apr 29;44(7):1304-12. doi: 10.1016/j.jbiomech.2011.01.008. Epub 2011 Feb 2.
It is generally accepted that the periodontal ligament (PDL) plays a crucial role in transferring occlusal forces from the teeth to the alveolar bone. Studies using finite element analysis (FEA) have helped to better understand this role and show that the stresses and strains in the alveolar bone are influenced by whether and how PDL is included in FE models. However, when the overall distribution of stresses and strains in crania and mandibles are of interest, PDL is often not included in FE models, although little is known about how this affects the results. Here we study the effect of representing PDL as a layer of solid material with isotropic homogeneous properties in an FE model of a human mandible using a novel application of geometric morphometrics. The results show that the modelling of the PDL affects the deformation and thus strain magnitudes not only of the alveolar bone around the biting tooth, but that the whole mandible deforms differently under load. As a result, the strain in the mandibular corpus is significantly increased when PDL is included, while the strain in the bone beneath the biting tooth is reduced. These results indicate the importance of the PDL in FE studies. Thus we recommend that the PDL should be included in FE models of the masticatory apparatus, with tests to assess the sensitivity of the results to changes in the Young's modulus of the PDL material.
普遍认为牙周韧带(PDL)在将咀嚼力从牙齿传递到牙槽骨中起着至关重要的作用。使用有限元分析(FEA)的研究有助于更好地理解这一作用,并表明牙槽骨中的应力和应变受 PDL 是否以及如何包含在 FE 模型中影响。然而,当关注颅骨和下颌骨的整体应力和应变分布时,PDL 通常不包含在 FE 模型中,尽管对于这如何影响结果知之甚少。在这里,我们使用几何形态计量学的新应用研究了在人类下颌骨的 FE 模型中代表具有各向同性均匀特性的 PDL 作为一层固体材料的效果。结果表明,PDL 的建模不仅会影响咬牙周围牙槽骨的变形和因此的应变大小,而且在加载下整个下颌骨的变形方式也不同。因此,当包含 PDL 时,下颌骨体的应变显著增加,而咬牙下方的骨的应变减少。这些结果表明 PDL 在 FE 研究中的重要性。因此,我们建议在下颌咀嚼器官的 FE 模型中包含 PDL,并进行测试以评估 PDL 材料的杨氏模量变化对结果的敏感性。