4D flow magnetic resonance imaging (MRI) is an emerging imaging technique where spatiotemporal 3D blood velocity can be captured with full volumetric coverage in a single non-invasive examination. This enables qualitative and quantitative analysis of hemodynamic flow parameters of the heart and great vessels. An increase in the image resolution would provide more accuracy and allow better assessment of the blood flow, especially for patients with abnormal flows. However, this must be balanced with increasing imaging time. The recent success of deep learning in generating super resolution images shows promise for implementation in medical images. We utilized computational fluid dynamics simulations to generate fluid flow simulations and repr...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
Time resolved phase-contrast magnetic resonance imaging 4D-PCMR (also called 4D Flow MRI) data while...
Time-resolved 3D velocity-encoded MR imaging with velocity encoding in three directions (4D Flow) ha...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Four-dimensional flow magnetic resonance imaging (MRI) has evolved as a non-invasive imaging techniq...
Four-dimensional flow magnetic resonance imaging (MRI) has evolved as a non-invasive imaging techniq...
Background Although contrast agents would be beneficial, they are seldom used in four-dimensional (4...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
4D Flow Magnetic Resonance Imaging (MRI) is the state-of-the-art technique to comprehensively measur...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
Time resolved phase-contrast magnetic resonance imaging 4D-PCMR (also called 4D Flow MRI) data while...
Time-resolved 3D velocity-encoded MR imaging with velocity encoding in three directions (4D Flow) ha...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Exploiting 4D-flow magnetic resonance imaging (MRI) data to quantify hemodynamics requires an adequa...
Four-dimensional flow magnetic resonance imaging (MRI) has evolved as a non-invasive imaging techniq...
Four-dimensional flow magnetic resonance imaging (MRI) has evolved as a non-invasive imaging techniq...
Background Although contrast agents would be beneficial, they are seldom used in four-dimensional (4...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
4D Flow Magnetic Resonance Imaging (MRI) is the state-of-the-art technique to comprehensively measur...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
Time resolved phase-contrast magnetic resonance imaging 4D-PCMR (also called 4D Flow MRI) data while...
Time-resolved 3D velocity-encoded MR imaging with velocity encoding in three directions (4D Flow) ha...