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Urine concentrating mechanism modelling in rat kidney inner medulla

机译:尿液浓缩机制模型在大鼠肾脏内髓质

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Physicians use charts that are prepared by experiments on animals or humans to prescribe drug dosage for patients. This method requires some precious amount of time by the Ministry of Health to approve new drugs to be used in healthcare centers. Three-dimensional modeling of the inner medulla by considering the known physiological features help us to predict the distribution of a drug or any minerals in the kidney. In this study we present modeling of the important species distribution including Na+ and urea in the rat inner medulla that influence the urine concentrating mechanism. We use a C++ code to develop the inner medulla geometry based on physiological data to better capture the concentrating mechanism. Features such as tubules variable diameters, pre-bend length and tubules' lateral distance relations have been considered in generating the geometry. Next, a CFD study is done to simulate the concentration of urea and Na+ along the corticomedullary axis using boundary conditions from the previous study on outer medulla for the inner medulla base. Results show a dramatic increase in concentration of the collecting ducts near the tip of the papilla. Concentration of urea and Na+ in the interstitium along the corticomedullary axis at different segments demonstrate an analogous pattern to the three-dimensional position of the different types of tubules with respect to each other that indicates the significance of the three-dimensional modeling in this simulation.
机译:医生使用由动物或人类的实验编写的图表,以规定患者的药物剂量。这种方法需要卫生部的一些珍贵的时间,以批准在医疗保健中心使用的新药。通过考虑已知的生理特征,内髓质的三维建模有助于我们预测肾脏中药物或任何矿物质的分布。在这项研究中,我们展示了影响尿液浓缩机制的大鼠内髓质中Na +和尿素的重要物种分布的建模。我们使用C ++代码基于生理数据来开发内麦克拉几何体,以更好地捕获集中机制。在产生几何形状时,已经考虑了小管可变直径,预弯曲长度和小管的横向距离关系等特征。接下来,使用来自先前研究中的外髓质碱基的边界条件来模拟CFD研究以模拟沿着皮质体型轴的尿素和Na +的浓度。结果表明,乳头尖端附近的收集管浓度的显着增加。在不同段的皮质体轴上沿着皮质体轴的间隙中的尿素和Na +浓缩,彼此相对于不同类型小管的三维位置表现出类似的图案,其表示在该模拟中的三维建模的重要性。

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