Guevara J M, Moncayo M A, Vaca-González J J, Gutiérrez M L, Barrera L A, Garzón-Alvarado D A
Institute for the Study of Inborn Errors of Metabolism, Pontificia Universidad Javeriana, Bogotá, Colombia.
Biomimetics Laboratory and Numerical Methods and Modeling Research Group (GNUM), Instituto de Biotecnología (IBUN), Universidad Nacional de Colombia, Bogotá, Colombia.
Comput Methods Programs Biomed. 2015 Jan;118(1):59-68. doi: 10.1016/j.cmpb.2014.10.007. Epub 2014 Oct 17.
Mechanical stimuli play a significant role in the process of long bone development as evidenced by clinical observations and in vivo studies. Up to now approaches to understand stimuli characteristics have been limited to the first stages of epiphyseal development. Furthermore, growth plate mechanical behavior has not been widely studied. In order to better understand mechanical influences on bone growth, we used Carter and Wong biomechanical approximation to analyze growth plate mechanical behavior, and explore stress patterns for different morphological stages of the growth plate. To the best of our knowledge this work is the first attempt to study stress distribution on growth plate during different possible stages of bone development, from gestation to adolescence. Stress distribution analysis on the epiphysis and growth plate was performed using axisymmetric (3D) finite element analysis in a simplified generic epiphyseal geometry using a linear elastic model as the first approximation. We took into account different growth plate locations, morphologies and widths, as well as different epiphyseal developmental stages. We found stress distribution during bone development established osteogenic index patterns that seem to influence locally epiphyseal structures growth and coincide with growth plate histological arrangement.
临床观察和体内研究表明,机械刺激在长骨发育过程中起着重要作用。到目前为止,了解刺激特征的方法仅限于骨骺发育的最初阶段。此外,生长板的力学行为尚未得到广泛研究。为了更好地理解机械因素对骨骼生长的影响,我们采用卡特和王的生物力学近似方法来分析生长板的力学行为,并探索生长板不同形态阶段的应力模式。据我们所知,这项工作是首次尝试研究从妊娠到青春期骨骼发育不同可能阶段生长板上的应力分布。使用线性弹性模型作为一阶近似,在简化的通用骨骺几何形状中,通过轴对称(3D)有限元分析对骨骺和生长板进行应力分布分析。我们考虑了不同的生长板位置、形态和宽度,以及不同的骨骺发育阶段。我们发现,骨骼发育过程中的应力分布建立了成骨指数模式,这些模式似乎会局部影响骨骺结构的生长,并与生长板的组织学排列一致。