Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the translation of computational fluid dynamics (CFD) to the clinical practice. Four-dimensional flow magnetic resonance imaging (4D Flow-MRI) can provide detailed information of blood flow but processing this information to elucidate the underlying anatomical structures is challenging. In this study, we present a novel approach to create high-contrast anatomical images from retrospective 4D Flow-MRI data. Methods For healthy and clinical cases, the 3D instantaneous velocities at multiple cardiac time steps were superimposed directly onto the 4D Flow-MRI magnitude images and combined into a single composite frame. This new Composite Phase-Contrast Mag...
4D flow MRI images make it possible to measure pulsatile blood flow inside deforming vessel, which i...
Traditionally, magnetic resonance imaging (MRI) of flow using phase contrast (PC) methods is accompl...
Purpose: Three-dimensional, time-resolved blood flow measurement (4D-flow) is a powerful research an...
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...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
The pathology of many cardiovascular diseases is believed to be heavily tied to local hemodynamics. ...
Four-dimensional (4D) flow MRI has emerged as a powerful non-invasive technique in cardiovascular im...
Quantitative assessment of haemodynamics has been utilised for better understanding of cardiac funct...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
4D flow magnetic resonance imaging (MRI) is an emerging imaging technique where spatiotemporal 3D bl...
4D flow MRI images make it possible to measure pulsatile blood flow inside deforming vessel, which i...
Traditionally, magnetic resonance imaging (MRI) of flow using phase contrast (PC) methods is accompl...
Purpose: Three-dimensional, time-resolved blood flow measurement (4D-flow) is a powerful research an...
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...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
Computational fluid dynamics (CFD) can have a complementary predictive role alongside the exquisite ...
The pathology of many cardiovascular diseases is believed to be heavily tied to local hemodynamics. ...
Four-dimensional (4D) flow MRI has emerged as a powerful non-invasive technique in cardiovascular im...
Quantitative assessment of haemodynamics has been utilised for better understanding of cardiac funct...
Blood flow through the heart and great vessels moves in three dimensions (3D) throughout time. Howev...
4D flow magnetic resonance imaging (MRI) is an emerging imaging technique where spatiotemporal 3D bl...
4D flow MRI images make it possible to measure pulsatile blood flow inside deforming vessel, which i...
Traditionally, magnetic resonance imaging (MRI) of flow using phase contrast (PC) methods is accompl...
Purpose: Three-dimensional, time-resolved blood flow measurement (4D-flow) is a powerful research an...