University of Padova, Centre of Mechanics of Biological Materials, Via F. Marzolo 9, I-35131 Padova, Italy.
Comput Methods Programs Biomed. 2011 Nov;104(2):193-8. doi: 10.1016/j.cmpb.2011.03.014. Epub 2011 May 4.
A non-linear visco-elastic constitutive model is adopted to describe the relaxation phenomena of the periodontal ligament (PDL). The introduction of a non-linear formulation of visco-elasticity is necessary because experimental data from the literature referring to animal models show that the relaxation rate depends on the level of strain applied. In particular, the percentage of relaxation increases with decrease of the applied strain. The constitutive model is consistent with the non-linear elastic behavior of the PDL in the case of high rate loading and large strains attained by the tissue. A hyperelastic formulation is adopted for the elastic behavior of the PDL and this formulation is developed adopting suitable measures of stress and strain. The anisotropy of the tissue induced by specific spatial orientation of collagen fibers is included in the model. With respect to recent numerical formulation proposed to describe the non-linear visco-elasticity of the PDL, the proposed model has the advantage of being more consistent with the micro-structural configuration of the tissue and the large strains it can undergo. The results obtained show that a reasonable description of the PDL relaxation phenomena can be obtained by assuming that relaxation times are independent of strain, whereas the relative stiffness results are dependent on strain applied through an exponential function.
采用非线性黏弹性本构模型来描述牙周韧带(PDL)的松弛现象。由于文献中提到的动物模型的实验数据表明,松弛率取决于施加的应变水平,因此需要引入非线性黏弹性的表述。具体来说,随着施加应变的减少,松弛的百分比会增加。本构模型与 PDL 在高加载率和组织达到大应变时的非线性弹性行为一致。PDL 的弹性行为采用超弹性表述,该表述通过适当的应力和应变度量来开发。由胶原纤维特定空间取向引起的组织各向异性包含在模型中。与最近提出的用于描述 PDL 非线性黏弹性的数值公式相比,所提出的模型具有与组织的微观结构配置和它所能承受的大应变更一致的优点。所得结果表明,通过假设松弛时间与应变无关,可以得到对 PDL 松弛现象的合理描述,而相对刚度结果则通过指数函数依赖于施加的应变。