首页> 外文期刊>American Journal of Physiology >A region-based mathematical model of the urine concentrating mechanism in the rat outer medulla. I. Formulation and base-case results.
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A region-based mathematical model of the urine concentrating mechanism in the rat outer medulla. I. Formulation and base-case results.

机译:大鼠外延髓中尿液浓缩机制的基于区域的数学模型。 I.配方和基本情况结果。

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We have developed a highly detailed mathematical model for the urine concentrating mechanism (UCM) of the rat kidney outer medulla (OM). The model simulates preferential interactions among tubules and vessels by representing four concentric regions that are centered on a vascular bundle; tubules and vessels, or fractions thereof, are assigned to anatomically appropriate regions. Model parameters, which are based on the experimental literature, include transepithelial transport properties of short descending limbs inferred from immunohistochemical localization studies. The model equations, which are based on conservation of solutes and water and on standard expressions for transmural transport, were solved to steady state. Model simulations predict significantly differing interstitial NaCl and urea concentrations in adjoining regions. Active NaCl transport from thick ascending limbs (TALs), at rates inferred from the physiological literature, resulted in model osmolality profiles along the OM that are consistent with tissue slice experiments. TAL luminal NaCl concentrations at the corticomedullary boundary are consistent with tubuloglomerular feedback function. The model exhibited solute exchange, cycling, and sequestration patterns (in tubules, vessels, and regions) that are generally consistent with predictions in the physiological literature, including significant urea addition from long ascending vasa recta to inner-stripe short descending limbs. In a companion study (Layton AT and Layton HE. Am J Physiol Renal Physiol 289: F1367-F1381, 2005), the impact of model assumptions, medullary anatomy, and tubular segmentation on the UCM was investigated by means of extensive parameter studies.
机译:我们已经为大鼠肾脏外延髓(OM)的尿液浓缩机制(UCM)开发了高度详细的数学模型。该模型通过代表以血管束为中心的四个同心区域来模拟小管和血管之间的优先相互作用。肾小管和血管或其部分被分配到解剖学上合适的区域。基于实验文献的模型参数包括从免疫组织化学定位研究中推断的短下降肢的上皮运输特性。将基于溶质和水守恒和透壁运输的标准表达式的模型方程求解到稳态。模型模拟预测相邻区域的间隙NaCl和尿素浓度明显不同。从生理学文献推断的速率,NaCl从厚的上升肢体(TAL)主动转运,导致沿OM的模型渗透压分布与组织切片实验一致。皮质肾小管边界的TAL腔NaCl浓度与肾小管肾小球反馈功能一致。该模型显示出的溶质交换,循环和螯合模式(在肾小管,血管和区域中)与生理文献中的预测基本一致,包括从长上升脉管直肠到内条纹短下降肢大量添加尿素。在一项伴随研究中(Layton AT和Layton HE。Am J Physiol Renal Physiol 289:F1367-F1381,2005),通过广泛的参数研究研究了模型假设,髓质解剖结构和肾小管切开对UCM的影响。

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