The dynamics of oxygen transport in the human brain are crucial to its response to local mismatches between flow and metabolism, such as occur in vascular dementia. We propose here a two phase continuum model, based on the coupled behaviour of oxygen transport in tissue and blood, which we use to simulate micro-strokes. The two phase coupled model is based on the assumption of porous media, being described by Darcy's equation for blood flow and the mass transport equation for oxygen. Simulation results suggest that the flow input is of importance to maintain the oxygen level at the remote region from the arterial-capillary junctions
Departures of normal blood flow and metabolite distribution from the cerebral microvasculature into ...
Brain ischaemia causes reduction of cerebral blood flow, which interrupts the transport of oxygen an...
Popular hemodynamic brain imaging methods, such as blood oxygen-level dependent functional magnetic ...
A compartmental model is developed for oxygen (O2) transport in brain microcirculation in the presen...
A compartmental model is developed for oxygen (O2) transport in brain microcirculation in the presen...
The cerebral microvasculature plays a key role in the coupling between cerebral blood flow and meta...
Most frequently (80%) strokes result from the occlusion of one or several brain vessels and are call...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
Healthy brain function depends on continuous blood flow carrying oxygen and metabolites. Ischaemic s...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
The paper addresses the mathematical study of a nonstationary continuum model describing oxygen prop...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...
The cerebral microvascular system is key to a large variety of cerebral processes, including oxygen ...
A simple model has been developed for simulation of oxygen (O$\sb2$) transport by red blood cells (R...
Departures of normal blood flow and metabolite distribution from the cerebral microvasculature into ...
Brain ischaemia causes reduction of cerebral blood flow, which interrupts the transport of oxygen an...
Popular hemodynamic brain imaging methods, such as blood oxygen-level dependent functional magnetic ...
A compartmental model is developed for oxygen (O2) transport in brain microcirculation in the presen...
A compartmental model is developed for oxygen (O2) transport in brain microcirculation in the presen...
The cerebral microvasculature plays a key role in the coupling between cerebral blood flow and meta...
Most frequently (80%) strokes result from the occlusion of one or several brain vessels and are call...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
Healthy brain function depends on continuous blood flow carrying oxygen and metabolites. Ischaemic s...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
The paper addresses the mathematical study of a nonstationary continuum model describing oxygen prop...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...
The cerebral microvascular system is key to a large variety of cerebral processes, including oxygen ...
A simple model has been developed for simulation of oxygen (O$\sb2$) transport by red blood cells (R...
Departures of normal blood flow and metabolite distribution from the cerebral microvasculature into ...
Brain ischaemia causes reduction of cerebral blood flow, which interrupts the transport of oxygen an...
Popular hemodynamic brain imaging methods, such as blood oxygen-level dependent functional magnetic ...