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In silico prediction of the cell proliferation in porous scaffold using model of effective pore

机译:使用有效孔模型在计算机上预测多孔支架中细胞的增殖

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The mathematical prediction of cell proliferation in porous scaffold still remains a challenge. The analysis of existing models and experimental data confirms a need for a new solution, which takes into account cells" development on the scaffold pore walls as well as some additional parameters such as the pore size, cell density in cellular layers, the thickness of the growing cell layer and others. The simulations, presented below, are based on three main approaches. The first approach takes into account multilayer cell growth on the pore walls of the scaffold. The second approach is a simulation of cell proliferation in a discrete process as a continuous one. The third one is the representation of scaffold structure as a system of cylindrical channels. Oxygen (nutrient) mass transfer is realized inside these channels. The model, described below, proposes the new solution to time dependent description of cell proliferation in porous scaffold and optimized trophical conditions for tissue development.
机译:多孔支架中细胞增殖的数学预测仍然是一个挑战。对现有模型和实验数据的分析证实,需要一种新的解决方案,该解决方案应考虑到细胞在支架孔壁上的发育以及一些其他参数,例如孔径,细胞层中的细胞密度,下面的模拟基于三种主要方法:第一种方法考虑了支架孔壁上多层细胞的生长;第二种方法是在离散过程中模拟细胞增殖。第三个是将支架结构表示为圆柱形通道的系统,在这些通道内实现了氧气(营养物质)的传质,该模型如下所述,提出了一种新的解决方案,用于时变描述细胞的增殖。多孔支架,优化了组织发育的营养条件。

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