Related Experiment Video
Updated: Jan 3, 2026

The Diffusion of Passive Tracers in Laminar Shear Flow
Published on: May 1, 2018
A critical parameter for transcapillary exchange of small solutes in countercurrent systems
1Medical Engineering Division, Department of Engineering, Queen Mary and Westfield College, London, UK. wen.wang@qmw.ac.uk
Abstract:
Small solute transport by a countercurrent capillary loop was studied using a theoretical model. In the model, the afferent and the efferent limbs of the loop share a common interstitial space, with which exchange of solute occurs. Sources of solute, epithelial cells, exist near capillaries and secret solute into the interstitial fluid. Parameters based on experimental measurements on young Sprague-Dawley rats were used in the model, and asymptotic solutions were derived. Comparison of the solute distribution in the interstitium between a capillary loop and a single capillary reveals that the ratio of the product of permeability (P(1)) and surface area (A(1)) to flow (F(1)) of the afferent limb, gamma(1)=P(1)A(1)/F(1) is a critical parameter for the countercurrent exchange system. It alone determines whether the countercurrent arrangement of capillaries facilitates clearance of solute from the interstitial fluid, a greater axial gradient of solute in the interstitium from the base to the tip of the capillary loop and a greater effect of flow, F, upon this gradient. The properties of the efferent limb affect the results, but it is gamma(1) that determines the characteristic difference between a capillary loop and a single capillary.
Related Concept Videos
Extracorporeal Removal of Drugs: Continuous Renal Replacement Therapy
Reabsorption and Secretion in the PCT
Transport mechanisms involving sodium ions (Na+) contribute significantly to solute reabsorption. These mechanisms include symport and antiport processes.
A key example is the...
Capillary Exchange
Capillary Beds
Capillaries connect arterioles, small branches of arteries, to venules,...
Transcellular Transport of Solutes
Osmosis and Osmotic Pressure of Solutions

