Hemodynamic information has proven valuable for analysis of cardiovascular diseases. Aberrant blood-flow patterns, for instance, often relate to disease progression. Magnetic resonance imaging enables blood-flow measurements that provide three-dimensional velocity fields during one heartbeat. However, visual analysis of these data is challenging, because of the abundance and complexity of information. Explicit feature extraction can facilitate the pattern characterization, and hence support visualization techniques to effectively convey anomalous flow areas. In this work, we improve on existing pattern matching methods that characterize blood-flow patterns in volumetric imaging data. To this end, we propose a set of helical and vortical pat...
Heart and vessel diseases, or cardiovascular diseases (CVDs), are globally the main cause of mortali...
Morphology of cardiovascular tissue is influenced by the unsteady behavior of the blood flow and vic...
Flow sensitive phase-contrast magnetic resonanceimaging sequences produce three-dimensional velocity...
Hemodynamic information has proven valuable for analysis of cardiovascular diseases. Aberrant blood-...
Cardiovascular diseases (CVDs) are the number one cause of death worldwide[1]. It is important to in...
Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in the heart....
Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in the heart....
Blood flow in the heart is highly complex. Although blood flow patterns have been investigated by bo...
BackgroundStandardized methods for mapping the complex blood flow in vessels are essential for proce...
Velocity-encoded magnetic resonance imaging of normal subjects is performed to produce flow fields o...
Hemodynamic information is increasingly inspected to assess cardiovascular disease. Abnormal blood-f...
Phase contrast MRI allows for the examination of complex hemodynamics in the heart and adjacent grea...
Blood flow patterns are closely linked to the morphology and function of the cardiovascular system. ...
Blood flow patterns are closely linked to the morphology and function of the cardiovascular system. ...
Morphology of cardiovascular tissue is influenced by the unsteady behavior of the blood flow and vic...
Heart and vessel diseases, or cardiovascular diseases (CVDs), are globally the main cause of mortali...
Morphology of cardiovascular tissue is influenced by the unsteady behavior of the blood flow and vic...
Flow sensitive phase-contrast magnetic resonanceimaging sequences produce three-dimensional velocity...
Hemodynamic information has proven valuable for analysis of cardiovascular diseases. Aberrant blood-...
Cardiovascular diseases (CVDs) are the number one cause of death worldwide[1]. It is important to in...
Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in the heart....
Phase contrast magnetic resonance imaging is performed to produce flow fields of blood in the heart....
Blood flow in the heart is highly complex. Although blood flow patterns have been investigated by bo...
BackgroundStandardized methods for mapping the complex blood flow in vessels are essential for proce...
Velocity-encoded magnetic resonance imaging of normal subjects is performed to produce flow fields o...
Hemodynamic information is increasingly inspected to assess cardiovascular disease. Abnormal blood-f...
Phase contrast MRI allows for the examination of complex hemodynamics in the heart and adjacent grea...
Blood flow patterns are closely linked to the morphology and function of the cardiovascular system. ...
Blood flow patterns are closely linked to the morphology and function of the cardiovascular system. ...
Morphology of cardiovascular tissue is influenced by the unsteady behavior of the blood flow and vic...
Heart and vessel diseases, or cardiovascular diseases (CVDs), are globally the main cause of mortali...
Morphology of cardiovascular tissue is influenced by the unsteady behavior of the blood flow and vic...
Flow sensitive phase-contrast magnetic resonanceimaging sequences produce three-dimensional velocity...