Perfusion magnetic resonance brain imaging induces temporal signal changes on brain tissues, manifesting distinct blood-supply patterns for the profound analysis of cerebral hemodynamics. We employed independent factor analysis to blindly separate such dynamic images into different maps, that is, artery, gray matter, white matter, vein and sinus, and choroid plexus, in conjunction with corresponding signal-time curves. The averaged signal-time curve on the segmented arterial area was further used to calculate the relative cerebral blood volume (rCBV), relative cerebral blood flow (rCBF), and mean transit time (MTT). The averaged ratios for rCBV, rCBF, and MTT between gray and white matters for normal subjects were congruent with those in th...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...
Dynamic-susceptibility-contrast magnetic resonance imaging, a popular perfusion imaging technique, r...
Dynamic-susceptibility-contrast magnetic resonance imaging, a popular perfusion imaging technique, r...
Purpose. Quantitative cerebral blood flow (CBF) measurement using dynamic susceptibility contrast- (...
Simultaneous implementation of magnetic resonance imaging methods for Arterial Spin Labeling (ASL) a...
Simultaneous implementation of magnetic resonance imaging methods for Arterial Spin Labeling (ASL) a...
Simultaneous implementation of magnetic resonance imaging methods for Arterial Spin Labeling (ASL) a...
Simultaneous implementation of magnetic resonance imaging methods for Arterial Spin Labeling (ASL) a...
Objective. To improve the quantitative assessment of cerebral blood volume (CBV) and flow (CBF) in t...
PURPOSE: To assess regional cerebral blood volume and perfusion rate by MR imaging. MATERIALS AND ME...
Purpose : To reconstruct a collateral blood volume map from the total regional cerebral blood volume...
Rost E, Geske R, Baake M. Signal analysis of impulse response functions in MR and CT measurements of...
Regional cerebral blood volume (rCBV) provides valuable information about the nature and progress of...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...
Dynamic-susceptibility-contrast magnetic resonance imaging, a popular perfusion imaging technique, r...
Dynamic-susceptibility-contrast magnetic resonance imaging, a popular perfusion imaging technique, r...
Purpose. Quantitative cerebral blood flow (CBF) measurement using dynamic susceptibility contrast- (...
Simultaneous implementation of magnetic resonance imaging methods for Arterial Spin Labeling (ASL) a...
Simultaneous implementation of magnetic resonance imaging methods for Arterial Spin Labeling (ASL) a...
Simultaneous implementation of magnetic resonance imaging methods for Arterial Spin Labeling (ASL) a...
Simultaneous implementation of magnetic resonance imaging methods for Arterial Spin Labeling (ASL) a...
Objective. To improve the quantitative assessment of cerebral blood volume (CBV) and flow (CBF) in t...
PURPOSE: To assess regional cerebral blood volume and perfusion rate by MR imaging. MATERIALS AND ME...
Purpose : To reconstruct a collateral blood volume map from the total regional cerebral blood volume...
Rost E, Geske R, Baake M. Signal analysis of impulse response functions in MR and CT measurements of...
Regional cerebral blood volume (rCBV) provides valuable information about the nature and progress of...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...
BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances...