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A COMPUTATIONAL ANALYSIS OF BONE FORMATION IN THE CRANIAL VAULT USING A COUPLED REACTION-DIFFUSION-STRAIN MODEL

机译:耦合反应-扩散-应变模型对颅内颅骨骨形成的计算分析

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摘要

Bones of the murine cranial vault are formed by differentiation of mesenchymal cells into osteoblasts, a process that is primarily understood to be controlled by a cascade of reactions between extracellular molecules and cells. We assume that the process can be modeled using Turing’s reaction-diffusion equations, a mathematical model describing the pattern formation controlled by two interacting molecules (activator and inhibitor). In addition to the processes modeled by reaction-diffusion equations, we hypothesize that mechanical stimuli of the cells due to growth of the underlying brain contribute significantly to the process of cell differentiation in cranial vault development. Structural analysis of the surface of the brain was conducted to explore the effects of the mechanical strain on bone formation. We propose a mechanobiological model for the formation of cranial vault bones by coupling the reaction-diffusion model with structural mechanics. The mathematical formulation was solved using the finite volume method. The computational domain and model parameters are determined using a large collection of experimental data that provide precise three dimensional (3D) measures of murine cranial geometry and cranial vault bone formation for specific embryonic time points. The results of this study suggest that mechanical strain contributes information to specific aspects of bone formation. Our mechanobiological model predicts some key features of cranial vault bone formation that were verified by experimental observations including the relative location of ossification centers of individual vault bones, the pattern of cranial vault bone growth over time, and the position of cranial vault sutures.
机译:鼠颅穹顶的骨骼是由间充质细胞分化为成骨细胞形成的,这一过程主要被理解为是由细胞外分子与细胞之间的级联反应控制的。我们假设该过程可以使用图灵的反应扩散方程式进行建模,该方程式是描述由两个相互作用分子(活化剂和抑制剂)控制的图案形成的数学模型。除了通过反应扩散方程建模的过程外,我们假设由于底层脑的生长而引起的细胞机械刺激对颅穹development发育中的细胞分化过程有显着贡献。进行了大脑表面的结构分析,以探索机械应变对骨骼形成的影响。我们通过结合反应扩散模型与结构力学,提出了用于颅穹v骨形成的力学生物学模型。使用有限体积法求解数学公式。使用大量实验数据来确定计算域和模型参数,这些实验数据可为特定胚胎时间点提供精确的三维(3D)鼠颅几何形状和颅穹v骨形成测量。这项研究的结果表明,机械应变有助于骨骼形成的特定方面的信息。我们的力学生物学模型预测了颅穹顶骨形成的一些关键特征,这些特征已通过实验观察得到了验证,这些特征包括单个穹顶骨的骨化中心的相对位置,颅穹顶骨随时间的生长模式以及颅穹顶缝合线的位置。

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