Davol Andrew, Bingham Michael S, Sah Robert L, Klisch Stephen M
Mechanical Engineering Department, California Polytechnic State University, San Luis Obispo, CA 93407, USA.
Biomech Model Mechanobiol. 2008 Aug;7(4):295-307. doi: 10.1007/s10237-007-0098-6. Epub 2007 Aug 16.
The long range objective of this work is to develop a cartilage growth finite element model (CGFEM), based on the theories of growing mixtures that has the capability to depict the evolution of the anisotropic and inhomogeneous mechanical properties, residual stresses, and nonhomogeneities that are attained by native adult cartilage. The CGFEM developed here simulates isotropic in vitro growth of cartilage with and without mechanical stimulation. To accomplish this analysis a commercial finite element code (ABAQUS) is combined with an external program (MATLAB) to solve an incremental equilibrium boundary value problem representing one increment of growth. This procedure is repeated for as many increments as needed to simulate the desired growth protocol. A case study is presented utilizing a growth law dependent on the magnitude of the diffusive fluid velocity to simulate an in vitro dynamic confined compression loading protocol run for 2 weeks. The results include changes in tissue size and shape, nonhomogeneities that develop in the tissue, as well as the variation that occurs in the tissue constitutive behavior from growth.
这项工作的长期目标是基于生长混合物理论开发一种软骨生长有限元模型(CGFEM),该模型能够描述天然成年软骨所具有的各向异性和非均匀力学性能、残余应力以及非均匀性的演变。这里开发的CGFEM模拟了有或没有机械刺激情况下软骨的各向同性体外生长。为完成此分析,将商业有限元代码(ABAQUS)与外部程序(MATLAB)相结合,以求解代表一个生长增量的增量平衡边界值问题。对所需的多个增量重复此过程,以模拟所需的生长方案。给出了一个案例研究,利用依赖于扩散流体速度大小的生长定律来模拟为期2周的体外动态受限压缩加载方案。结果包括组织大小和形状的变化、组织中出现的非均匀性,以及生长过程中组织本构行为发生的变化。