Purpose: Arterial spin labeling (ASL) acquisitions at multiple post-labeling delays may provide more accurate quantification of cerebral blood flow (CBF), by fitting appropriate kinetic models and simultaneously estimating relevant parameters such as the arterial transit time (ATT) and arterial cerebral blood volume (aCBV). We evaluate the effects of denoising strategies on model fitting and parameter estimation when accounting for the dispersion of the label bolus through the vasculature in cerebrovascular disease. Methods: We analyzed multi-delay ASL data from 17 cerebral small vessel disease patients (50 ± 9 y) and 13 healthy controls (52 ± 8 y), by fitting an extended kinetic model with or without bolus dispersion. We considered two den...
Purpose To determine whether sacrificing part of the scan time of pseudo-continuous arterial spin la...
Introduction: Cerebral blood flow (CBF) is an important physiological parameter that can be quantifi...
International audienceNon-invasive measurement of Cerebral Blood Flow (CBF) is now feasible thanks t...
A major assumption in arterial spin labeling (ASL) MRI perfusion quantification is the time course o...
Arterial Spin Labelling (ASL) imaging derives a perfusion image by tracing the accumulation of magne...
Multi-post-labeling-delay pseudo-continuous arterial spin labeling (multi-PLD PCASL) allows for abso...
BACKGROUND AND PURPOSE: Multidelay arterial spin-labeling is a promising emerging method in clinical...
BACKGROUND AND PURPOSE:Multidelay arterial spin-labeling is a promising emerging method in clinical ...
Arterial spin labeling (ASL) techniques are gaining popularity for visualizing and quantifying cereb...
International audienceThe introduction of Arterial Spin Labelling (ASL) techniques in Magnetic Reson...
Multi-post-labeling-delay pseudo-continuous arterial spin labeling (multi-PLD PCASL) allows for abso...
PurposeIn this paper, the ability to quantify cerebral blood flow by arterial spin labeling (ASL) wa...
Abstract Background Arterial spin labeling (ASL) provides a noninvasive way to measure cerebral bloo...
Amongst the various implementations of arterial spin labeling MRI methods for quantifying cerebral p...
Purpose: Arterial spin labeling (ASL) perfusion imaging indicates direct and absolute measurement of...
Purpose To determine whether sacrificing part of the scan time of pseudo-continuous arterial spin la...
Introduction: Cerebral blood flow (CBF) is an important physiological parameter that can be quantifi...
International audienceNon-invasive measurement of Cerebral Blood Flow (CBF) is now feasible thanks t...
A major assumption in arterial spin labeling (ASL) MRI perfusion quantification is the time course o...
Arterial Spin Labelling (ASL) imaging derives a perfusion image by tracing the accumulation of magne...
Multi-post-labeling-delay pseudo-continuous arterial spin labeling (multi-PLD PCASL) allows for abso...
BACKGROUND AND PURPOSE: Multidelay arterial spin-labeling is a promising emerging method in clinical...
BACKGROUND AND PURPOSE:Multidelay arterial spin-labeling is a promising emerging method in clinical ...
Arterial spin labeling (ASL) techniques are gaining popularity for visualizing and quantifying cereb...
International audienceThe introduction of Arterial Spin Labelling (ASL) techniques in Magnetic Reson...
Multi-post-labeling-delay pseudo-continuous arterial spin labeling (multi-PLD PCASL) allows for abso...
PurposeIn this paper, the ability to quantify cerebral blood flow by arterial spin labeling (ASL) wa...
Abstract Background Arterial spin labeling (ASL) provides a noninvasive way to measure cerebral bloo...
Amongst the various implementations of arterial spin labeling MRI methods for quantifying cerebral p...
Purpose: Arterial spin labeling (ASL) perfusion imaging indicates direct and absolute measurement of...
Purpose To determine whether sacrificing part of the scan time of pseudo-continuous arterial spin la...
Introduction: Cerebral blood flow (CBF) is an important physiological parameter that can be quantifi...
International audienceNon-invasive measurement of Cerebral Blood Flow (CBF) is now feasible thanks t...