Natali A N, Carniel E L, Pavan P G, Bourauel C, Ziegler A, Keilig L
Centre of Mechanics of Biological Materials, University of Padova, Italy.
J Biomech. 2007;40(8):1701-8. doi: 10.1016/j.jbiomech.2006.08.011. Epub 2006 Oct 30.
The paper pertains to the analysis of the biomechanical behaviour of the periodontal ligament (PDL) by using a combined experimental and numerical approach. Experimental analysis provides information about a two-rooted pig premolar tooth in its socket with regard to morphological configuration and deformational response. The numerical analysis developed for the present investigation adopts a specific anisotropic hyperelastic formulation, accounting for tissue structural arrangement. The parameters to be adopted for the PDL constitutive model are evaluated with reference to data deducted from experimental in vitro tests on different specimens taken from literature. According to morphometric data relieved, solid models are provided as basis for the development of numerical models that adopt the constitutive formulation proposed. A reciprocal validation of experimental and numerical data allows for the evaluation of reliability of results obtained. The work is intended as preliminary investigation to study the correlation between mechanical status of PDL and induction to cellular activity in orthodontic treatments.
本文通过实验与数值相结合的方法,对牙周韧带(PDL)的生物力学行为进行分析。实验分析提供了关于两颗猪前磨牙在牙槽窝中的形态结构和变形响应的信息。为本次研究开发的数值分析采用了特定的各向异性超弹性公式,考虑了组织结构排列。PDL本构模型所采用的参数是根据从文献中获取的不同标本的体外实验测试数据推导出来进行评估的。根据所获得的形态测量数据,提供实体模型作为采用所提出的本构公式的数值模型开发的基础。实验数据与数值数据的相互验证有助于评估所获结果的可靠性。这项工作旨在作为初步研究,以探讨正畸治疗中PDL力学状态与细胞活性诱导之间的相关性。