A two pore size distribution model for transcapillary exchange of substances.
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Summary
Morphological as well as physiological measurements support the notion that the endothelial barrier of the microvasculature, through which such exchange must occur, is structurally heterogeneous.
- Type
- article
- Published
- 1984-01-01
- Cited by
- 0
- References
- 11
- OpenAlex
- https://openalex.org/W71951309
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:31067122
Keywords
Membrane, Biophysics, Chemistry, Hydrostatic pressure, Vesicle
References
- Pulmonary vascular transport in sheep. A mathematical model.
- Modified filtration-permeability model of transcapillary transport--a solution of the Pappenheimer pore puzzle?
- Drag coefficients for the movement of rigid spheres through liquid-filled cylindrical pores.
- A fiber matrix model of capillary permeability.
- A Physical Interpretation of the Phenomenological Coefficients of Membrane Permeability
- Filtration, diffusion and molecular sieving through peripheral capillary membranes; a contribution to the pore theory of capillary permeability.
- Passage of dextran molecules across the blood-lymph barrier.
- A theoretical model of protein, fluid, and small molecule transport in the lung.
- Permeability of intestinal capillaries to endogenous macromolecules.
- Regional differences in capillary permeability
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