We propose to synthesize patient-specific 4D flow MRI datasets of turbulent flow paired with ground truth flow data to support training of inference methods. Turbulent blood flow is computed based on the Navier-Stokes equations with moving domains using realistic boundary conditions for aortic shapes, wall displacements and inlet velocities obtained from patient data. From the simulated flow, synthetic multipoint 4D flow MRI data is generated with user-defined spatiotemporal resolutions and reconstructed with a Bayesian approach to compute time-varying velocity and turbulence maps. For MRI data synthesis, a fixed hypothetical scan time budget is assumed and accordingly, changes to spatial resolution and time averaging result in correspondin...
PurposeTo measure the Reynolds stress tensor using 4D flow MRI, and to evaluate its contribution to ...
Image based, patient speci c computational uid dynamics (CFD) modeling has gained dramatic attention...
Four-dimensional flow magnetic resonance imaging (MRI) has evolved as a non-invasive imaging techniq...
Turbulent blood flow is involved in the pathogenesis of several cardiovascular diseases. While it is...
Imaging hemodynamics play an important role in the diagnosis of abnormal blood flow due to vascular ...
Background Volumetric quantification of mean and fluctuating velocity components of transient and t...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
While the clinical gold standard for pressure difference measurements is invasive catheterization, 4...
The quantification of turbulent flow by phase-contrast Magnetic Resonance Imaging (MRI) enables the ...
PurposeTo evaluate whether automated vorticity mapping four-dimensional (4D) flow MRI can identify r...
Current diagnostic tools for assessing cardiovascular disease mostly focus on measuring a given biom...
Diseased heart valves perturb normal blood flow with a range of hemodynamic and pathologic consequen...
While the clinical gold standard for pressure difference measurements is invasive catheterization, 4...
Although recent advances of four-dimensional (4D) flow magnetic resonance imaging (MRI) has introduc...
Quantifying turbulence velocity fluctuation is important because it indicates the fluid energy dissi...
PurposeTo measure the Reynolds stress tensor using 4D flow MRI, and to evaluate its contribution to ...
Image based, patient speci c computational uid dynamics (CFD) modeling has gained dramatic attention...
Four-dimensional flow magnetic resonance imaging (MRI) has evolved as a non-invasive imaging techniq...
Turbulent blood flow is involved in the pathogenesis of several cardiovascular diseases. While it is...
Imaging hemodynamics play an important role in the diagnosis of abnormal blood flow due to vascular ...
Background Volumetric quantification of mean and fluctuating velocity components of transient and t...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
While the clinical gold standard for pressure difference measurements is invasive catheterization, 4...
The quantification of turbulent flow by phase-contrast Magnetic Resonance Imaging (MRI) enables the ...
PurposeTo evaluate whether automated vorticity mapping four-dimensional (4D) flow MRI can identify r...
Current diagnostic tools for assessing cardiovascular disease mostly focus on measuring a given biom...
Diseased heart valves perturb normal blood flow with a range of hemodynamic and pathologic consequen...
While the clinical gold standard for pressure difference measurements is invasive catheterization, 4...
Although recent advances of four-dimensional (4D) flow magnetic resonance imaging (MRI) has introduc...
Quantifying turbulence velocity fluctuation is important because it indicates the fluid energy dissi...
PurposeTo measure the Reynolds stress tensor using 4D flow MRI, and to evaluate its contribution to ...
Image based, patient speci c computational uid dynamics (CFD) modeling has gained dramatic attention...
Four-dimensional flow magnetic resonance imaging (MRI) has evolved as a non-invasive imaging techniq...