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首页> 外文期刊>Advances in Mathematical Physics >A Fractional Anomalous Diffusion Model and Numerical Simulation for Sodium Ion Transport in the Intestinal Wall
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A Fractional Anomalous Diffusion Model and Numerical Simulation for Sodium Ion Transport in the Intestinal Wall

机译:钠离子在肠壁中的迁移的分数异常扩散模型和数值模拟

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摘要

The authors present a fractional anomalous diffusion model to describe the uptake of sodium ions across the epithelium of gastrointestinal mucosa and their subsequent diffusion in the underlying blood capillaries using fractional Fick’s law. A heterogeneous two-phase model of the gastrointestinal mucosa is considered, consisting of a continuous extracellular phase and a dispersed cellular phase. The main mode of uptake is considered to be a fractional anomalous diffusion under concentration gradient and potential gradient. Appropriate partial differential equations describing the variation with time of concentrations of sodium ions in both the two phases across the intestinal wall are obtained using Riemann-Liouville space-fractional derivative and are solved by finite difference methods. The concentrations of sodium ions in the interstitial space and in the cells have been studied as a function of time, and the mean concentration of sodium ions available for absorption by the blood capillaries has also been studied. Finally, numerical results are presented graphically for various values of different parameters. This study demonstrates that fractional anomalous diffusion model is appropriate for describing the uptake of sodium ions across the epithelium of gastrointestinal mucosa.
机译:作者提出了一种分数异常扩散模型,该模型利用分数Fick定律描述了钠离子在胃肠道粘膜上皮中的吸收及其随后在基础毛细血管中的扩散。考虑了胃肠道粘膜的异相两相模型,其由连续的细胞外相和分散的细胞相组成。摄取的主要方式被认为是浓度梯度和电势梯度下的分数异常扩散。使用Riemann-Liouville空间分数导数,获得了描述肠壁两相中钠离子浓度随时间变化的适当偏微分方程,并通过有限差分法求解。研究了组织间隙和细胞中钠离子的浓度随时间的变化,还研究了可被毛细血管吸收的钠离子的平均浓度。最后,以图形方式显示了不同参数的各种值的数值结果。这项研究表明分数异常扩散模型适用于描述胃肠道粘膜上皮中钠离子的吸收。

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