The longitudinal transport of nanoparticles in blood vessels has been analyzed with blood described as a Casson fluid. Starting from the celebrated Taylor and Aris theory, an explicit expression has been derived for the effective longitudinal diffusion (D eff) depending non-linearly on the rheological parameter ξc, the ratio between the plug and the vessel radii; and on the permeability parameters related to the hydraulic conductivity and pressure drop across the vessel wall, respectively. An increase of ξc or has the effect of reducing D eff, and thus both the rheology of blood and the permeability of the vessels may constitute a physiological barrier to the intravascular delivery of nanoparticles. © 2007 Biomedical Engineering Society.

The transport of nanoparticles in blood vessels: The effect of vessel permeability and blood rheology

Gentile F.
Formal Analysis
;
Ferrari M.;Decuzzi P.
2008-01-01

Abstract

The longitudinal transport of nanoparticles in blood vessels has been analyzed with blood described as a Casson fluid. Starting from the celebrated Taylor and Aris theory, an explicit expression has been derived for the effective longitudinal diffusion (D eff) depending non-linearly on the rheological parameter ξc, the ratio between the plug and the vessel radii; and on the permeability parameters related to the hydraulic conductivity and pressure drop across the vessel wall, respectively. An increase of ξc or has the effect of reducing D eff, and thus both the rheology of blood and the permeability of the vessels may constitute a physiological barrier to the intravascular delivery of nanoparticles. © 2007 Biomedical Engineering Society.
2008
Casson fluid
Microcirculation
Nanoparticles
Transport equation
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12317/102063
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