Bar plots of carotid vessel wall morphology parameters for all coils: (a) normalized wall index (NWI), (b) vessel wall area (Avw), (c) vertical vessel wall thickness (Tv) and (d) horizontal vessel wall thickness (Th). For all the parameters, no significant differences were found for different coils or SENSE settings.</p
Wall Shear Stress is a key factor in the development of atherosclerosis. To assess the WSS in-vivo, ...
BACKGROUND:A three-dimensional (3D) cardiovascular magnetic resonance (CMR) vessel wall im...
Purpose: Carotid angiography is used to assess stroke risk, but it cannot reliably character-ize pla...
Bar plots of carotid image quality parameters for all coils: (a) vessel wall SNR, (b) g-factor, (c) ...
Background The quality of carotid wall MRI can benefit substantially from a dedicated RF coil that i...
BACKGROUND:The quality of carotid wall MRI can benefit substantially from a dedicated RF coil that i...
textabstractPurpose: To investigate the ability of magnetic resonance imaging (MRI) to visualize the...
ObjectivesWe compared in vivo 3.0-T magnetic resonance (MR) images of the carotid artery wall in pig...
Purpose: To evaluate the 7 Tesla (T) MRI of the carotid arteries, as quantitatively compared with 3T...
PURPOSE: Currently, a multi-contrast protocol, including a combination of five MR-sequences is used ...
PURPOSE: Currently, a multi-contrast protocol, including a combination of five MR-sequences is used ...
Purpose: To study the repeatability of common carotid mean wall thickness (MWT) measured with high r...
This study aimed to evaluate the difference in wall shear stress (WSS) (axial, circumferential, and ...
Objective: We sought to determine differences with cardiovascular magnetic resonance (CMR) in the mo...
Wall Shear Stress is a key factor in the development of atherosclerosis. To assess the WSS in-vivo, ...
BACKGROUND:A three-dimensional (3D) cardiovascular magnetic resonance (CMR) vessel wall im...
Purpose: Carotid angiography is used to assess stroke risk, but it cannot reliably character-ize pla...
Bar plots of carotid image quality parameters for all coils: (a) vessel wall SNR, (b) g-factor, (c) ...
Background The quality of carotid wall MRI can benefit substantially from a dedicated RF coil that i...
BACKGROUND:The quality of carotid wall MRI can benefit substantially from a dedicated RF coil that i...
textabstractPurpose: To investigate the ability of magnetic resonance imaging (MRI) to visualize the...
ObjectivesWe compared in vivo 3.0-T magnetic resonance (MR) images of the carotid artery wall in pig...
Purpose: To evaluate the 7 Tesla (T) MRI of the carotid arteries, as quantitatively compared with 3T...
PURPOSE: Currently, a multi-contrast protocol, including a combination of five MR-sequences is used ...
PURPOSE: Currently, a multi-contrast protocol, including a combination of five MR-sequences is used ...
Purpose: To study the repeatability of common carotid mean wall thickness (MWT) measured with high r...
This study aimed to evaluate the difference in wall shear stress (WSS) (axial, circumferential, and ...
Objective: We sought to determine differences with cardiovascular magnetic resonance (CMR) in the mo...
Wall Shear Stress is a key factor in the development of atherosclerosis. To assess the WSS in-vivo, ...
BACKGROUND:A three-dimensional (3D) cardiovascular magnetic resonance (CMR) vessel wall im...
Purpose: Carotid angiography is used to assess stroke risk, but it cannot reliably character-ize pla...