The purpose of this study was to evaluate a free-breathing three-dimensional (3D) dual inversion-recovery (DIR) segmented k-space gradient-echo (turbo field echo [TFE]) imaging sequence at 3T for the quantification of aortic vessel wall dimensions. The effect of respiratory motion suppression on image quality was tested. Furthermore, the reproducibility of the aortic vessel wall measurements was investigated. Seven healthy subjects underwent 3D DIR TFE imaging of the aortic vessel wall with and without respiratory navigator. Subsequently, this sequence with respiratory navigator was performed twice in 10 healthy subjects to test its reproducibility. The signal-to-noise (SNR), contrast-to-noise ratio (CNR), vessel wall sharpness, and vessel ...
Background and Purpose: Intracranial vessel wall imaging using MRI has great potential as a clinical...
PURPOSE: To evaluate a novel real-time phase-contrast magnetic resonance imaging (MRI) technique for...
BACKGROUND AND PURPOSE: Intracranial vessel wall imaging using MRI has great potential as a clinical...
Aims Although the coronary artery vessel wall can be imaged non-invasively using magnetic resonance ...
Magnetic resonance imaging (MRI) is uniquely suited to study the pathophysiology of arteriosclerosis...
Background: Pre-clinical detection of atherosclerosis enables personalized preventive strategies in ...
Background: Pre-clinical detection of atherosclerosis enables personalized preventive strategies in ...
UNLABELLED: Magnetic resonance imaging (MRI) is uniquely suited to study the pathophysiology of arte...
Aims Although the coronary artery vessel wall can be imaged non-invasively using magnetic resonance ...
ObjectivesIn light of the ongoing discussion about flow-mediated arterial remodeling, it was the aim...
This work developed a three-dimensional (3D) diffusion-prepared segmented steady-steady free precess...
Intracranial vessel wall imaging using MRI has great potential as a clinical method for assessing in...
PURPOSE: This study is to compare the accuracy of four different black-blood T2 mapping sequences in...
PurposeAlthough three-dimensional (3D) turbo spin echo (TSE) with variable flip angles has proven to...
BACKGROUND: Magnetic resonance coronary angiography is challenging because of the motion of the vess...
Background and Purpose: Intracranial vessel wall imaging using MRI has great potential as a clinical...
PURPOSE: To evaluate a novel real-time phase-contrast magnetic resonance imaging (MRI) technique for...
BACKGROUND AND PURPOSE: Intracranial vessel wall imaging using MRI has great potential as a clinical...
Aims Although the coronary artery vessel wall can be imaged non-invasively using magnetic resonance ...
Magnetic resonance imaging (MRI) is uniquely suited to study the pathophysiology of arteriosclerosis...
Background: Pre-clinical detection of atherosclerosis enables personalized preventive strategies in ...
Background: Pre-clinical detection of atherosclerosis enables personalized preventive strategies in ...
UNLABELLED: Magnetic resonance imaging (MRI) is uniquely suited to study the pathophysiology of arte...
Aims Although the coronary artery vessel wall can be imaged non-invasively using magnetic resonance ...
ObjectivesIn light of the ongoing discussion about flow-mediated arterial remodeling, it was the aim...
This work developed a three-dimensional (3D) diffusion-prepared segmented steady-steady free precess...
Intracranial vessel wall imaging using MRI has great potential as a clinical method for assessing in...
PURPOSE: This study is to compare the accuracy of four different black-blood T2 mapping sequences in...
PurposeAlthough three-dimensional (3D) turbo spin echo (TSE) with variable flip angles has proven to...
BACKGROUND: Magnetic resonance coronary angiography is challenging because of the motion of the vess...
Background and Purpose: Intracranial vessel wall imaging using MRI has great potential as a clinical...
PURPOSE: To evaluate a novel real-time phase-contrast magnetic resonance imaging (MRI) technique for...
BACKGROUND AND PURPOSE: Intracranial vessel wall imaging using MRI has great potential as a clinical...