A long-time exposure to lack of oxygen (hypoxia) in some regions of the cerebrovascular system is believed to be one of the causes of cerebral neurological disease. Performing {\em in vivo} studies on the human brain is complicated and can be highly risky for patients. In the present study, we show how a combination of Magnetic Resonance Imaging (MRI) and Computational Fluid Dynamics (CFD) can provide a non-invasive alternative for studying blood flow and transport of oxygen within the cerebral vasculature. We perform computer simulations of oxygen mass transfer in the subject-specific geometry of the Circle of Willis. The computational domain and boundary conditions are based on 4D flow MRI measurements. Two different oxygen mass transfer ...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
The microvasculature plays a key role in oxygen transport in the mammalian brain. Despite the close ...
A long-time exposure to lack of oxygen (hypoxia) in some regions of the cerebrovascular system is be...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...
Healthy brain function depends on continuous blood flow carrying oxygen and metabolites. Ischaemic s...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
This dissertation describes both methodological developments in quantitative functional magnetic res...
The Circle of Willis (CoW) is a ring-like arterial structure forming the major anastomotic connectio...
Oxygen is delivered to brain tissue by a dense network of microvessels, which actively control cereb...
Cerebral hemodynamics in the presence of cerebrovascular occlusive disease (CVOD) are influenced by ...
Departures of normal blood flow and metabolite distribution from the cerebral microvasculature into ...
Oxygen is delivered to brain tissue by a dense network of microvessels, which actively control cereb...
Cerebral hemodynamics in the presence of cerebrovascular occlusive disease (CVOD) are influenced by ...
An estimated 85% of haemorrhagic strokes are secondary to the rupture of an intracranial aneurysm (I...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
The microvasculature plays a key role in oxygen transport in the mammalian brain. Despite the close ...
A long-time exposure to lack of oxygen (hypoxia) in some regions of the cerebrovascular system is be...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...
Healthy brain function depends on continuous blood flow carrying oxygen and metabolites. Ischaemic s...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
This dissertation describes both methodological developments in quantitative functional magnetic res...
The Circle of Willis (CoW) is a ring-like arterial structure forming the major anastomotic connectio...
Oxygen is delivered to brain tissue by a dense network of microvessels, which actively control cereb...
Cerebral hemodynamics in the presence of cerebrovascular occlusive disease (CVOD) are influenced by ...
Departures of normal blood flow and metabolite distribution from the cerebral microvasculature into ...
Oxygen is delivered to brain tissue by a dense network of microvessels, which actively control cereb...
Cerebral hemodynamics in the presence of cerebrovascular occlusive disease (CVOD) are influenced by ...
An estimated 85% of haemorrhagic strokes are secondary to the rupture of an intracranial aneurysm (I...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
The microvasculature plays a key role in oxygen transport in the mammalian brain. Despite the close ...