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首页> 外文期刊>American Journal of Physiology >Distributed model of peritoneal fluid absorption.
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Distributed model of peritoneal fluid absorption.

机译:腹膜液吸收的分布式模型。

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摘要

The process of water reabsorption from the peritoneal cavity into the surrounding tissue substantially decreases the net ultrafiltration in patients on peritoneal dialysis. The goal of this study was to propose a mathematical model based on data from clinical studies and animal experiments to describe the changes in absorption rate, interstitial hydrostatic pressure, and tissue hydration caused by increased intraperitoneal pressure after the initiation of peritoneal dialysis. The model describes water transport through a deformable, porous tissue after infusion of isotonic solution into the peritoneal cavity. Blood capillary and lymphatic vessels are assumed to be uniformly distributed within the tissue. Starling's law is applied for a description of fluid transport through the capillary wall, and the transport within the interstitium is modeled by Darcy's law. Transport parameters such as interstitial fluid volume ratio, tissue hydraulic conductance, and lymphatic absorption in the tissue are dependent on local interstitial pressure. Numerical simulations show the strong dependence of fluid absorption and tissue hydration on the values of intraperitoneal pressure. Our results predict that in the steady state only approximately 20-40% of the fluid that flows into the tissue from the peritoneal cavity is absorbed by the lymphatics situated in the tissue, whereas the larger (60-80%) part of the fluid is absorbed by the blood capillaries.
机译:从腹膜腔到周围组织的水重吸收过程大大降低了腹膜透析患者的净超滤作用。这项研究的目的是基于临床研究和动物实验的数据,提出一个数学模型,以描述腹膜透析开始后腹膜内压力升高引起的吸收率,组织间静水压和组织水合作用的变化。该模型描述了等渗溶液注入腹膜腔后水通过可变形的多孔组织的运输。假定毛细血管和淋巴管在组织内均匀分布。史达林定律适用于描述通过毛细管壁的流体传输,而间质内的传输是由达西定律建模的。诸如间质液体积比,组织水力传导率和组织中淋巴吸收的转运参数取决于局部间质压。数值模拟表明,液体吸收和组织水合作用对腹膜内压力的强烈依赖性。我们的结果预测,在稳态下,只有约20-40%的液体从腹膜腔流入组织,而位于组织中的淋巴管会吸收,而较大部分(60-80%)的液体则被组织中的淋巴管吸收。被毛细血管吸收。

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