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A Multi-Cellular Distributed Model for Nitric Oxide Transport in the Blood

机译:一氧化氮在血液中运输的多细胞分布式模型。

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摘要

In this work, a multi-cellular, spatially distributed model, that describes the production, transport and consumption of Nitric Oxide (NO) in blood vessels and the surrounding tissue, is developed. In contrast to previous modeling efforts, such as continuum and single-cell models, the current model accounts explicitly for the presence of, and interactions among, a population of red blood cells (RBCs) inside the blood vessel. Using mainly experimentally derived parameters, the model equations, subject to the appropriate boundary conditions, are solved for the NO concentration profile using an efficient finite-element algorithm.
机译:在这项工作中,开发了一种多细胞,空间分布的模型,该模型描述了血管和周围组织中一氧化氮(NO)的产生,运输和消耗。与以前的建模工作(例如连续体和单细胞模型)相比,当前模型明确说明了血管内红细胞(RBC)的存在和相互作用。主要使用实验得出的参数,使用有效的有限元算法求解模型方程式,并在适当的边界条件下求解NO浓度曲线。

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