A large variety of severe medical conditions involve alterations in microvascular circulation. Hence, measurements or simulation of circulation and perfusion has considerable clinical value and can be used for diagnostics, evaluation of treatment efficacy, and for surgical planning. However, the accuracy of traditional tracer kinetic one-compartment models is limited due to scale dependency. As a remedy, we propose a scale invariant mathematical framework for simulating whole brain perfusion. The suggested framework is based on a segmentation of anatomical geometry down to imaging voxel resolution. Large vessels in the arterial and venous network are identified from time-of-flight (ToF) and quantitative susceptibility mapping (QSM). Macro-s...
Objective. To improve the quantitative assessment of cerebral blood volume (CBV) and flow (CBF) in t...
Cerebrovascular diseases are by far the largest causes of death in the UK, as well as one of the lea...
International audienceThe amazing topological and geometrical complexity of micro-vascular networks ...
A large variety of severe medical conditions involve alterations in microvascular circulation. Hence...
A large variety of severe medical conditions involve alterations in microvascular circulation. Hence...
The cerebral microvasculature plays a key role in the transport of blood and the delivery of nutrien...
The human brain microcirculation has a multiscale architecture. At large scale, arteriolar and venul...
The brain is vital for every human being and consequently its functioning is a highly relevant resea...
The advancement of ischaemic stroke treatment relies on resource-intensive experiments and clinical ...
Perfusion is a fundamental biological function, giving an indication of tissue metabolism, through t...
<div><p>Aging or cerebral diseases may induce architectural modifications in human brain microvascul...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
The microvasculature plays a crucial role in the perfusion of blood through cerebral tissue. Current...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
Aging or cerebral diseases may induce architectural modifications in human brain microvascular netwo...
Objective. To improve the quantitative assessment of cerebral blood volume (CBV) and flow (CBF) in t...
Cerebrovascular diseases are by far the largest causes of death in the UK, as well as one of the lea...
International audienceThe amazing topological and geometrical complexity of micro-vascular networks ...
A large variety of severe medical conditions involve alterations in microvascular circulation. Hence...
A large variety of severe medical conditions involve alterations in microvascular circulation. Hence...
The cerebral microvasculature plays a key role in the transport of blood and the delivery of nutrien...
The human brain microcirculation has a multiscale architecture. At large scale, arteriolar and venul...
The brain is vital for every human being and consequently its functioning is a highly relevant resea...
The advancement of ischaemic stroke treatment relies on resource-intensive experiments and clinical ...
Perfusion is a fundamental biological function, giving an indication of tissue metabolism, through t...
<div><p>Aging or cerebral diseases may induce architectural modifications in human brain microvascul...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
The microvasculature plays a crucial role in the perfusion of blood through cerebral tissue. Current...
Recent advances in modeling oxygen supply to cortical brain tissue have begun to elucidate the funct...
Aging or cerebral diseases may induce architectural modifications in human brain microvascular netwo...
Objective. To improve the quantitative assessment of cerebral blood volume (CBV) and flow (CBF) in t...
Cerebrovascular diseases are by far the largest causes of death in the UK, as well as one of the lea...
International audienceThe amazing topological and geometrical complexity of micro-vascular networks ...