A Mathematical Model of Renal Blood Distribution Coupling TGF, MR and Tubular System
GAO Ci-xiu
YANG Lin
WANG Ke-qiang
XU Shi-xiong
DAI Pei-dong
摘要:Objective:To investigate the relationship between renal blood distribution and the physiological activities of the kidney. Methods:A mathematical model is developed based on Hagan-Poiseuille law and mass transport, coupling mechanics of myogenic response (MR), tubuloglomerular feedback (TGF) and the tubular system in the renal medulla. The model parameters, including the permeability coefficients, the vascular lumen radius and the solute concentration at the inlet of the tubes, are derived from the experimental results. Simulations of the blood and water flow in the loop of Henel, the collecting duct and vas rectum, are carried out by the model of the tubular system in the renal medulla, based on conservations of water and solutes for transmural transport. Then the tubular model is coupled with MR and TGF mechanics. Results:The results predict the dynamics of renal autoregulation on its blood pressure and flow,and the distributions are 88.5% in the cortex, 10.3% in the medulla, and 1.2% at papilla,respectively. The fluid flow and solute concentrations along the tubules and vasa recta are obtained. Conclusion:The present model could assess renal functions qualitatively and quantitatively and provide a methodological approach for clinical research.
机标关键词:TGFMathematical Modelrenal medullamathematical modelResultscollecting ductmass transportblood pressure
分类号:R318.08(医用一般科学)
资助基金:National Basic Research Program(973 Project)
论文发表日期:2009-01-01
在线出版日期:2025-08-15(本平台首次上网日期,不代表文献的发表时间)
页数:12( 9-20 )
英文信息展开
中国生物医学工程学报(英文版)

中国生物医学工程学报(英文版)

ISSN:1004-0552
年,卷(期):2009,18(1)
所属栏目:Research papers