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Quantitative Analysis of Vortical Blood Flow in the Thoracic Aorta Using 4D Phase Contrast MRI
by
Giese, Daniel
, Bunck, Alexander Christian
, Kozerke, Sebastian
, von Spiczak, Jochen
, Maintz, David
, Crelier, Gerard
in
Absolute vorticity
/ Algorithms
/ Aorta
/ Aorta, Thoracic - physiopathology
/ Aortic arch
/ Aortic Diseases - pathology
/ Biomedical engineering
/ Blood
/ Blood flow
/ Blood Flow Velocity
/ Blood vessels
/ Cardiovascular disease
/ Case-Control Studies
/ Computational fluid dynamics
/ Coronary vessels
/ Diagnosis
/ Diastole
/ Dimensional analysis
/ Elongation
/ Expansion
/ Flow
/ Fluid dynamics
/ Fluid flow
/ Heart
/ Heart diseases
/ Helical flow
/ Hemodynamics
/ Humans
/ Image Interpretation, Computer-Assisted - methods
/ Imaging, Three-Dimensional - methods
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ Mathematical analysis
/ Measurement
/ Microscopy, Phase-Contrast - methods
/ NMR
/ Nuclear magnetic resonance
/ Phase contrast
/ Physiological aspects
/ Physiology
/ Predictor-corrector methods
/ Quantitative analysis
/ Regional Blood Flow - physiology
/ Rotational flow
/ Systole
/ Thorax
/ Three dimensional analysis
/ Vascular diseases
/ Velocity
/ Vortex flow
/ Vortexes
/ Vortices
/ Vorticity
2015
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Quantitative Analysis of Vortical Blood Flow in the Thoracic Aorta Using 4D Phase Contrast MRI
by
Giese, Daniel
, Bunck, Alexander Christian
, Kozerke, Sebastian
, von Spiczak, Jochen
, Maintz, David
, Crelier, Gerard
in
Absolute vorticity
/ Algorithms
/ Aorta
/ Aorta, Thoracic - physiopathology
/ Aortic arch
/ Aortic Diseases - pathology
/ Biomedical engineering
/ Blood
/ Blood flow
/ Blood Flow Velocity
/ Blood vessels
/ Cardiovascular disease
/ Case-Control Studies
/ Computational fluid dynamics
/ Coronary vessels
/ Diagnosis
/ Diastole
/ Dimensional analysis
/ Elongation
/ Expansion
/ Flow
/ Fluid dynamics
/ Fluid flow
/ Heart
/ Heart diseases
/ Helical flow
/ Hemodynamics
/ Humans
/ Image Interpretation, Computer-Assisted - methods
/ Imaging, Three-Dimensional - methods
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ Mathematical analysis
/ Measurement
/ Microscopy, Phase-Contrast - methods
/ NMR
/ Nuclear magnetic resonance
/ Phase contrast
/ Physiological aspects
/ Physiology
/ Predictor-corrector methods
/ Quantitative analysis
/ Regional Blood Flow - physiology
/ Rotational flow
/ Systole
/ Thorax
/ Three dimensional analysis
/ Vascular diseases
/ Velocity
/ Vortex flow
/ Vortexes
/ Vortices
/ Vorticity
2015
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Quantitative Analysis of Vortical Blood Flow in the Thoracic Aorta Using 4D Phase Contrast MRI
by
Giese, Daniel
, Bunck, Alexander Christian
, Kozerke, Sebastian
, von Spiczak, Jochen
, Maintz, David
, Crelier, Gerard
in
Absolute vorticity
/ Algorithms
/ Aorta
/ Aorta, Thoracic - physiopathology
/ Aortic arch
/ Aortic Diseases - pathology
/ Biomedical engineering
/ Blood
/ Blood flow
/ Blood Flow Velocity
/ Blood vessels
/ Cardiovascular disease
/ Case-Control Studies
/ Computational fluid dynamics
/ Coronary vessels
/ Diagnosis
/ Diastole
/ Dimensional analysis
/ Elongation
/ Expansion
/ Flow
/ Fluid dynamics
/ Fluid flow
/ Heart
/ Heart diseases
/ Helical flow
/ Hemodynamics
/ Humans
/ Image Interpretation, Computer-Assisted - methods
/ Imaging, Three-Dimensional - methods
/ Magnetic resonance imaging
/ Magnetic Resonance Imaging - methods
/ Mathematical analysis
/ Measurement
/ Microscopy, Phase-Contrast - methods
/ NMR
/ Nuclear magnetic resonance
/ Phase contrast
/ Physiological aspects
/ Physiology
/ Predictor-corrector methods
/ Quantitative analysis
/ Regional Blood Flow - physiology
/ Rotational flow
/ Systole
/ Thorax
/ Three dimensional analysis
/ Vascular diseases
/ Velocity
/ Vortex flow
/ Vortexes
/ Vortices
/ Vorticity
2015
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Quantitative Analysis of Vortical Blood Flow in the Thoracic Aorta Using 4D Phase Contrast MRI
Journal Article
Quantitative Analysis of Vortical Blood Flow in the Thoracic Aorta Using 4D Phase Contrast MRI
2015
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Overview
Phase contrast MRI allows for the examination of complex hemodynamics in the heart and adjacent great vessels. Vortex flow patterns seem to play an important role in certain vascular pathologies. We propose two- and three-dimensional metrics for the objective quantification of aortic vortex blood flow in 4D phase contrast MRI.
For two-dimensional vorticity assessment, a standardized set of 6 regions-of-interest (ROIs) was defined throughout the course of the aorta. For each ROI, a heatmap of time-resolved vorticity values [Formula: see text] was computed. Evolution of minimum, maximum, and average values as well as opposing rotational flow components were analyzed. For three-dimensional analysis, vortex core detection was implemented combining the predictor-corrector method with λ2 correction. Strength, elongation, and radial expansion of the detected vortex core were recorded over time. All methods were applied to 4D flow MRI datasets of 9 healthy subjects, 2 patients with mildly dilated aorta, and 1 patient with aortic aneurysm.
Vorticity quantification in the 6 standardized ROIs enabled the description of physiological vortex flow in the healthy aorta. Helical flow developed early in the ascending aorta (absolute vorticity = 166.4±86.4 s-1 at 12% of cardiac cycle) followed by maximum values in mid-systole in the aortic arch (240.1±45.2 s-1 at 16%). Strength, elongation, and radial expansion of 3D vortex cores escalated in early systole, reaching a peak in mid systole (strength = 241.2±30.7 s-1 at 17%, elongation = 65.1±34.6 mm at 18%, expansion = 80.1±48.8 mm2 at 20%), before all three parameters similarly decreased to overall low values in diastole. Flow patterns were considerably altered in patient data: Vortex flow developed late in mid/end-systole close to the aortic bulb and no physiological helix was found in the aortic arch.
We have introduced objective measures for quantification of vortical flow in 4D phase contrast MRI. Vortex blood flow in the thoracic aorta could be consistently described in all healthy volunteers. In patient data, pathologically altered vortex flow was observed.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Aorta
/ Aorta, Thoracic - physiopathology
/ Blood
/ Computational fluid dynamics
/ Diastole
/ Flow
/ Heart
/ Humans
/ Image Interpretation, Computer-Assisted - methods
/ Imaging, Three-Dimensional - methods
/ Magnetic Resonance Imaging - methods
/ Microscopy, Phase-Contrast - methods
/ NMR
/ Regional Blood Flow - physiology
/ Systole
/ Thorax
/ Velocity
/ Vortexes
/ Vortices
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