Recent achievements in 4D flow MRI increased the interest of CFD-MRI studies, which require comparison of velocity fields from both approaches for validation purposes. A novel flow regularization approach is proposed to provide a ground truth and to perform robust, mathematically reasonable comparisons between CFD and MRI. Our suggested method projects the measured and denoised data into the same space as the computational domain and applies the Helmholtz-Hodge theorem to recover the divergence-free property of the flow field by decomposing the velocity field into its divergence-free, curl-free and harmonic components. Furthermore, an aortic phantom study has been set-up under fully controlled laminar flow conditions with helical flow patte...
Phase contrast MRI (PC MRI) measurements, also called 4D flow MRI or velocity-encoded MRI, and compu...
In the last two decades, phase-contrast magnetic resonance imaging (PC-MRI) has evolved from two-dim...
While the clinical gold standard for pressure difference measurements is invasive catheterization, 4...
PURPOSE: To improve velocity vector field reconstruction from undersampled four-dimensional (4D) flo...
Abstract—We propose a new variational framework for the problem of reconstructing flow fields from n...
Time resolved phase-contrast magnetic resonance imaging 4D-PCMR (also called 4D Flow MRI) data while...
Abstract Background Phase contrast magnetic resonance...
Divergence-free smoothing with wall treatment (DFSwt) method is proposed for processing with four-di...
In this work we propose a variational reconstruction algorithm for enhancement and denoising of flow...
Magnetic resonance imaging (MRI) can be used in vivo in combination with computational fluid dynamic...
International audience4D flow MRI is a promising tool in cardiovascular imaging. However, its lack o...
The analysis of blood flow patterns and the interaction between salient topological flow features an...
Introduction: Information from MR blood flow quantification can be used to evaluate patient health, ...
Abstract: Proper orthogonal decomposition (POD) is applied to reconstruct noisy data of blood flow...
Magnetic Resonance Imaging (MRI) has the ability to image flow qualitatively and quantitatively. How...
Phase contrast MRI (PC MRI) measurements, also called 4D flow MRI or velocity-encoded MRI, and compu...
In the last two decades, phase-contrast magnetic resonance imaging (PC-MRI) has evolved from two-dim...
While the clinical gold standard for pressure difference measurements is invasive catheterization, 4...
PURPOSE: To improve velocity vector field reconstruction from undersampled four-dimensional (4D) flo...
Abstract—We propose a new variational framework for the problem of reconstructing flow fields from n...
Time resolved phase-contrast magnetic resonance imaging 4D-PCMR (also called 4D Flow MRI) data while...
Abstract Background Phase contrast magnetic resonance...
Divergence-free smoothing with wall treatment (DFSwt) method is proposed for processing with four-di...
In this work we propose a variational reconstruction algorithm for enhancement and denoising of flow...
Magnetic resonance imaging (MRI) can be used in vivo in combination with computational fluid dynamic...
International audience4D flow MRI is a promising tool in cardiovascular imaging. However, its lack o...
The analysis of blood flow patterns and the interaction between salient topological flow features an...
Introduction: Information from MR blood flow quantification can be used to evaluate patient health, ...
Abstract: Proper orthogonal decomposition (POD) is applied to reconstruct noisy data of blood flow...
Magnetic Resonance Imaging (MRI) has the ability to image flow qualitatively and quantitatively. How...
Phase contrast MRI (PC MRI) measurements, also called 4D flow MRI or velocity-encoded MRI, and compu...
In the last two decades, phase-contrast magnetic resonance imaging (PC-MRI) has evolved from two-dim...
While the clinical gold standard for pressure difference measurements is invasive catheterization, 4...