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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A model of NO/O2 transport in capillary-perfused tissue containing an arteriole and venule pair.
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A model of NO/O2 transport in capillary-perfused tissue containing an arteriole and venule pair.

机译:毛细血管和小静脉对的毛细血管灌注组织中NO / O2传输的模型。

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The goal of this study was to investigate the complex co-transport of nitric oxide (NO) and oxygen (O2) in a paired arteriole-venule, surrounded by capillary-perfused tissue using a computer model. Blood flow was assumed to be steady in the arteriolar and venular lumens and to obey Darcy's law in the tissue. NO consumption rate was assumed to be constant in the core of the arteriolar and venular lumen and to decrease linearly to the endothelium. Average NO consumption rate by capillary blood in a unit tissue volume was assumed proportional to the blood flux across the volume. Our results predict that: (1) the capillary bed, which connects the arteriole and venule, facilitates the release of O2 from the vessel pair to the surrounding tissue; (2) decreasing the distance between arteriole and venule can result in a higher NO concentration in the venular wall than in the arteriolar wall; (3) in the absence of capillaries in the surrounding tissue, diffusion of NO from venule to arteriole contributes littleto NO concentration in the arteriolar wall; and (4) when capillaries are added to the simulation, a significant increase of NO in the arteriolar wall is observed.
机译:这项研究的目的是使用计算机模型研究一氧化氮(NO)和氧气(O2)在成对的小动脉-小静脉中的复杂共迁移,该小动脉-小静脉周围是被毛细血管灌注的组织。假定小动脉和静脉腔内的血流稳定,并遵守组织中的达西定律。假定NO消耗率在小动脉和静脉腔的核心处是恒定的,并且相对于内皮呈线性下降。假定单位组织体积中毛细血管血液的平均NO消耗率与该体积中的血流量成正比。我们的结果预测:(1)连接小动脉和小静脉的毛细血管床可促进O2从血管对释放到周围组织; (2)减小小动脉与小静脉之间的距离可导致静脉壁中的NO浓度高于小动脉壁中的NO浓度; (3)在周围组织中不存在毛细血管的情况下,NO从小静脉扩散到小动脉对小动脉壁中的NO浓度几乎没有贡献; (4)在模拟过程中增加毛细管时,观察到小动脉壁中NO的显着增加。

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