International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of fundamental importance to assess processes of drug delivery. Here, we analyse the impact of the tumour microscopic properties on the macroscopic dynamics of vascular and interstitial fluid flow by using formal asymptotic techniques.Here, we obtained different macroscopic continuum models that couple vascular and interstitial flows. The homogenization technique allows us to derive two macroscale tissue models of fluid flow that take into account the microscopic structure of the vessels and the interstitial tissue. Different regimes were derived according to the magnitude of the vessel wall permeability and the interstitial hydraulic conductivi...
Cancers exhibit spatially heterogeneous, unique vascular architectures across individual samples, ce...
Transvascular and interstitial fluid movements are involved in many important biological processes s...
Transvascular and interstitial fluid movements are involved in many important biological processes s...
International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of ...
International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of ...
International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of ...
International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of ...
Understanding the dynamics underlying fluid transport in tumour tissues is of fundamental importance...
Understanding the dynamics underlying fluid transport in tumour tissues is of fundamental importance...
The role of the microvascular network geometry in transport phenomena in solid tumors and its interp...
Understanding the perfusion of blood and drugs in tumours is fundamental to foreseeing the efficacy ...
We develop A computational finite element model to study microcirculation and drug delivery to tumor...
We develop A computational finite element model to study microcirculation and drug delivery to tumor...
We develop A computational finite element model to study microcirculation and drug delivery to tumor...
We develop A computational finite element model to study microcirculation and drug delivery to tumor...
Cancers exhibit spatially heterogeneous, unique vascular architectures across individual samples, ce...
Transvascular and interstitial fluid movements are involved in many important biological processes s...
Transvascular and interstitial fluid movements are involved in many important biological processes s...
International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of ...
International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of ...
International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of ...
International audienceUnderstanding the dynamics underlying fluid transport in tumour tissues is of ...
Understanding the dynamics underlying fluid transport in tumour tissues is of fundamental importance...
Understanding the dynamics underlying fluid transport in tumour tissues is of fundamental importance...
The role of the microvascular network geometry in transport phenomena in solid tumors and its interp...
Understanding the perfusion of blood and drugs in tumours is fundamental to foreseeing the efficacy ...
We develop A computational finite element model to study microcirculation and drug delivery to tumor...
We develop A computational finite element model to study microcirculation and drug delivery to tumor...
We develop A computational finite element model to study microcirculation and drug delivery to tumor...
We develop A computational finite element model to study microcirculation and drug delivery to tumor...
Cancers exhibit spatially heterogeneous, unique vascular architectures across individual samples, ce...
Transvascular and interstitial fluid movements are involved in many important biological processes s...
Transvascular and interstitial fluid movements are involved in many important biological processes s...