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首页> 外文期刊>Artificial Organs >Recreating the size-dependent reabsorption function of proximal convoluted tubule towards artificial kidney applications: Structural analysis and computational study
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Recreating the size-dependent reabsorption function of proximal convoluted tubule towards artificial kidney applications: Structural analysis and computational study

机译:重建近端复杂小管对人工肾脏应用的尺寸依赖性重吸收功能:结构分析和计算研究

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摘要

Human kidneys tend to be affected adversely and fail to function more often than any other organ in the body because of diet, heredity, and lifestyle of a person. Dialysis is the technique presently in use for replacing the failed kidney function but it is packed with painfulness, bulkiness, and is costly also. There is a growing need for development of an artificial kidney that eradicates the problems associated with dialysis. This article proposes a structure that mimics the most important aspect of the human kidney: the size-dependent reabsorption of endothelial cells in the proximal convoluted tubule (PCT). The proposed structure consists of transporting channels connecting blood tubules surrounded on both sides of a main tubule. Geometries of the channels are analyzed for optimum flow by varying angles with respect to the main tubule. The analytical formulae have been developed by considering proper boundary conditions governing the flow in the structure, which makes the model as robust, concise, and realistic as the actual PCT. The mathematical model is validated against the benchmark FEM tool COMSOL Multiphysics and the results seem to be satisfactory. This article concludes, that slant channels possess a considerably higher average flow velocity of 5.39 x 10(-5) m/s (approximate to 52% reabsorption rate) than straight channels with 4.77 x 10(-5) m/s (approximate to 46% reabsorption rate) which is closer to the actual PCT reabsorption rate of 60%. The proposed model is first of its kind in nature among the reported works which creates and exhibits simulation environment of PCT reabsorption function supported by mathematical formulation and also can be useful to study and develop artificial kidney in near future.
机译:人类肾脏往往受到不利影响的不利影响,并且由于人的饮食,遗传和生活方式而不是身体的任何其他器官更频繁地运作。透析是目前用于更换失败的肾功能的技术,但它被疼痛,膨胀,昂贵,也是昂贵的。对人工肾的发展日益增长的是消除与透析相关的问题。本文提出了一种模拟人肾上最重要方面的结构:近端复杂小管(PCT)中内皮细胞的大小依赖性重吸收。所提出的结构包括运输连接在主管的两侧包围的血管管的通道。通过相对于主小管的不同角度分析通道的几何形状以获得最佳流动。通过考虑适当的边界条件,通过考虑结构中的流量的适当边界条件来开发,这使得模型变得坚固,简洁,现实作为实际PCT。数学模型针对基准FEM工具COMSOL多发性验证,结果似乎是令人满意的。本文的结论是,倾斜通道具有比具有4.77×10( - 5)M / s的直通道(近似的52%重吸收率)的平均流速相当高的平均流速。(近似为52%) 46%的重吸收率)更接近实际PCT重吸收率为60%。拟议的模型首先在据报道的作品中首先,在数学制剂支持的PCT Reobleption函数的仿真环境中,这也是有用的,并且在不久的将来可以有用。

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