The purpose of this study was to assess the feasibility of measuring different permeability parameters with T1-weighted dynamic contrast-enhanced (DCE) magnetic resonance imaging (MRI) in order to investigate the blood brain-barrier permeability associated with different brain tumors. The Patlak algorithm and the extended Tofts-Kety model were used to this aim. Twenty-five adult patients with tumors of different histological grades were enrolled in this study. MRI examinations were performed at 1.5\u2009T. Multiflip angle, fast low-angle shot, and axial 3D T1-weighted images were acquired to calculate T1 maps, followed by a DCE acquisition. A region of interest was placed within the tumor of each patient to calculate the mean value of diffe...
Blood–brain barrier (BBB) leakage can be measured using dynamic contrast‐enhanced magnetic resonance...
There is increasing recognition of the importance of blood–brain barrier (BBB) disruption in aging, ...
Leakage of Gd-DTPA through a defective blood-brain bamer is measured quantitatively using dynamic MR...
Copyright © 2013 Maurizio Bergamino et al. This is an open access article distributed under the Crea...
Dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) is a well-established technique for s...
Breakdown of the blood-brain barrier (BBB), occurring in many neurological diseases, has been diffic...
Dynamic contrast-enhanced magnetic resonance im-aging (DCE-MRI) is widely used to evaluate tumor per...
Background: Brain tumor is one of the most common tumors. A successful treatment might be achieved w...
BACKGROUND AND PURPOSE: Relative cerebral blood volume (rCBV) and vascular permeability (K(trans)) p...
Purpose: To determine optimal parameters for acquisition and processing of dynamic contrast-enhance...
Leakage of Gd-DTPA through a defective blood-brain barrier is measured quantitatively using dynamic ...
AbstractDynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) is widely used to evaluate tu...
Dynamic contrast enhanced (DCE-) MRI data can be analyzed using a two-compartment pharmacokinetic mo...
Purpose: To determine optimal parameters for acquisition and processing of dynamic contrast-enhance...
Purpose: The feasibility of measuring blood-brain barrier permeability was studied in a 366-10 brain...
Blood–brain barrier (BBB) leakage can be measured using dynamic contrast‐enhanced magnetic resonance...
There is increasing recognition of the importance of blood–brain barrier (BBB) disruption in aging, ...
Leakage of Gd-DTPA through a defective blood-brain bamer is measured quantitatively using dynamic MR...
Copyright © 2013 Maurizio Bergamino et al. This is an open access article distributed under the Crea...
Dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) is a well-established technique for s...
Breakdown of the blood-brain barrier (BBB), occurring in many neurological diseases, has been diffic...
Dynamic contrast-enhanced magnetic resonance im-aging (DCE-MRI) is widely used to evaluate tumor per...
Background: Brain tumor is one of the most common tumors. A successful treatment might be achieved w...
BACKGROUND AND PURPOSE: Relative cerebral blood volume (rCBV) and vascular permeability (K(trans)) p...
Purpose: To determine optimal parameters for acquisition and processing of dynamic contrast-enhance...
Leakage of Gd-DTPA through a defective blood-brain barrier is measured quantitatively using dynamic ...
AbstractDynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) is widely used to evaluate tu...
Dynamic contrast enhanced (DCE-) MRI data can be analyzed using a two-compartment pharmacokinetic mo...
Purpose: To determine optimal parameters for acquisition and processing of dynamic contrast-enhance...
Purpose: The feasibility of measuring blood-brain barrier permeability was studied in a 366-10 brain...
Blood–brain barrier (BBB) leakage can be measured using dynamic contrast‐enhanced magnetic resonance...
There is increasing recognition of the importance of blood–brain barrier (BBB) disruption in aging, ...
Leakage of Gd-DTPA through a defective blood-brain bamer is measured quantitatively using dynamic MR...