Pages that link to "Item:Q480058"
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The following pages link to Computational models for fluid exchange between microcirculation and tissue interstitium (Q480058):
Displaying 16 items.
- Computational simulations of flow and oxygen/drug delivery in a three-dimensional capillary network (Q470573) (← links)
- A new and consistent well model for one-phase flow in anisotropic porous media using a distributed source model (Q777542) (← links)
- Modeling tissue perfusion in terms of 1d-3d embedded mixed-dimension coupled problems with distributed sources (Q777543) (← links)
- A stabilized cut discontinuous Galerkin framework for elliptic boundary value and interface problems (Q1987910) (← links)
- Nonlinear mixed-dimension model for embedded tubular networks with application to root water uptake (Q2134709) (← links)
- 3D dimensionally reduced modeling and gradient-based optimization of microchannel cooling networks (Q2309952) (← links)
- Mathematical analysis, finite element approximation and numerical solvers for the interaction of 3D reservoirs with 1D wells (Q2320406) (← links)
- Projection-based resolved interface 1D-3D mixed-dimension method for embedded tubular network systems (Q2667959) (← links)
- Preconditioners for saddle point systems with trace constraints coupling 2D and 1D domains (Q2831079) (← links)
- Hydraulic model of cerebral arteriovenous malformations (Q2973607) (← links)
- Mathematical modeling, analysis and numerical approximation of second-order elliptic problems with inclusions (Q4568507) (← links)
- Preconditioning trace coupled 3<i>d</i>‐1<i>d</i> systems using fractional Laplacian (Q4966603) (← links)
- Derivation and analysis of coupled PDEs on manifolds with high dimensionality gap arising from topological model reduction (Q5216109) (← links)
- Waterscales: mathematical and computational foundations for modelling cerebral fluid flow (Q6160061) (← links)
- An optimization based 3D-1D coupling strategy for tissue perfusion and chemical transport during tumor-induced angiogenesis (Q6184110) (← links)
- Modelling and simulation of anisotropic growth in brain tumours through poroelasticity: a study of ventricular compression and therapeutic protocols (Q6661933) (← links)