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骺结构形成的机械生物学模型。

A mechanobiological model of epiphysis structures formation.

机构信息

Mechanics and Materials Research Building 407, Office 203A, Universidad Nacional de Colombia, Bogotá, Colombia.

出版信息

J Theor Biol. 2011 Oct 21;287:13-25. doi: 10.1016/j.jtbi.2011.07.011. Epub 2011 Jul 28.

Abstract

Developing bone consists of epiphysis, metaphysis and diaphysis. The secondary ossification centre (SOC) appears and grows within the epiphysis, involving two histological stages. Firstly, cartilage canals appear; they carry hypertrophy factors towards the central area of the epiphysis. Canal growth and expansion is modulated by stress on the epiphysis. Secondly, the diffusion of hypertrophy factors causes SOC growth. Hypertrophy is regulated by biological and mechanical factors present within the epiphysis. The finite element method has been used for solving a coupled system of differential equations for modelling these histological stages of epiphyseal development. Cartilage canal spatial-temporal growth patterns were obtained as well as the SOC formation pattern. This model qualitatively agreed with experimental results reported by other authors.

摘要

骨骼发育包括骺、干骺端和骨干。次级骨化中心(SOC)出现在骺内并生长,涉及两个组织学阶段。首先,软骨管出现;它们携带肥大因子向骺的中央区域移动。管的生长和扩张受到骺上的应力调节。其次,肥大因子的扩散导致 SOC 生长。肥大受骺内存在的生物和机械因素调节。有限元法已用于求解耦合微分方程组,以模拟骺发育的这些组织学阶段。获得了软骨管时空生长模式以及 SOC 形成模式。该模型与其他作者报道的实验结果定性一致。

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