We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood oxygenation state in response to stimulation. The model has three compartments to take into account the fact that the cerebral blood flow and volume as measured concurrently using laser Doppler flowmetry and optical imaging spectroscopy have contributions from the arterial, capillary as well as the venous compartments of the vasculature. It is an extension to previous one-compartment hemodynamic models which assume that the measured blood volume changes are from the venous compartment only. An important assumption of the model is that the tissue oxygen concentration is a time varying state variable of the system and is driven by the changes i...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
The dynamics of oxygen transport in the human brain are crucial to its response to local mismatches ...
Purpose: Brain hemodynamics is fundamental for the functioning of the human being. Many biophysical ...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...
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...
The cerebral microvasculature plays a key role in the coupling between cerebral blood flow and meta...
A compartmental model is developed for oxygen (O2) transport in brain microcirculation in the presen...
The dynamics of blood oxygen delivery and tissue consumption produced by evoked stimulation of the r...
The dynamics of blood oxygen delivery and tissue consumption produced by evoked stimulation of the r...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
In this paper a model is proposed that predicts the response of the cerebral vasculature to changes ...
Changes in cerebral blood flow (f) and vascular volume (v) are of major interest in mapping cerebral...
Abstract- A former model of cerebrovascular regulation and intracranial pressure dynamics has been i...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
The dynamics of oxygen transport in the human brain are crucial to its response to local mismatches ...
Purpose: Brain hemodynamics is fundamental for the functioning of the human being. Many biophysical ...
We describe a mathematical model linking changes in cerebral blood flow, blood volume and the blood ...
The brain accounts for around 2 % of human adult bodyweight but consumes 20 % of the resting oxygen ...
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...
The cerebral microvasculature plays a key role in the coupling between cerebral blood flow and meta...
A compartmental model is developed for oxygen (O2) transport in brain microcirculation in the presen...
The dynamics of blood oxygen delivery and tissue consumption produced by evoked stimulation of the r...
The dynamics of blood oxygen delivery and tissue consumption produced by evoked stimulation of the r...
Oxygen supply to cells by the cardiovascular system involves multiple physical and chemical processe...
In this paper a model is proposed that predicts the response of the cerebral vasculature to changes ...
Changes in cerebral blood flow (f) and vascular volume (v) are of major interest in mapping cerebral...
Abstract- A former model of cerebrovascular regulation and intracranial pressure dynamics has been i...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
The dynamics of oxygen transport in the human brain are crucial to its response to local mismatches ...
Purpose: Brain hemodynamics is fundamental for the functioning of the human being. Many biophysical ...