Time resolved phase-contrast magnetic resonance imaging 4D-PCMR (also called 4D Flow MRI) data while capable of non-invasively measuring blood velocities, can be affected by acquisition noise, flow artifacts, and resolution limits. In this paper, we present a novel method for merging 4D Flow MRI with computational fluid dynamics (CFD) to address these limitations and to reconstruct de-noised, divergence-free high-resolution flow-fields. Proper orthogonal decomposition (POD) is used to construct the orthonormal basis of the local sampling of the space of all possible solutions to the flow equations both at the low-resolution level of the 4D Flow MRI grid and the high-level resolution of the CFD mesh. Low-resolution, de-noised flow is obtaine...
Traditionally, magnetic resonance imaging (MRI) of flow using phase contrast (PC) methods is accompl...
This thesis addresses thorough discussions on the improvement of hemodynamic analysis by four-dimens...
Four-dimensional (4D) flow MRI allows quantifying flow in blood vessels–non invasively and in vivo. ...
Time-resolved three-dimensional spatial encoding combined with three-directional velocity-encoded ph...
Abstract: Proper orthogonal decomposition (POD) is applied to reconstruct noisy data of blood flow...
Phase-Contrast Magnetic Resonance Imaging (PC-MRI) surpasses all other imaging methods in quality an...
The pathology of many cardiovascular diseases is believed to be heavily tied to local hemodynamics. ...
A numerical approach is presented to efficiently simulate time-resolved 3D phase-contrast Magnetic r...
International audienceA numerical approach is presented to efficiently simulate time-resolved 3D pha...
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...
International audienceA numerical approach is presented to efficiently simulate time-resolved 3D pha...
International audienceA numerical approach is presented to efficiently simulate time-resolved 3D pha...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
4D flow magnetic resonance imaging (MRI) is an emerging imaging technique where spatiotemporal 3D bl...
Traditionally, magnetic resonance imaging (MRI) of flow using phase contrast (PC) methods is accompl...
This thesis addresses thorough discussions on the improvement of hemodynamic analysis by four-dimens...
Four-dimensional (4D) flow MRI allows quantifying flow in blood vessels–non invasively and in vivo. ...
Time-resolved three-dimensional spatial encoding combined with three-directional velocity-encoded ph...
Abstract: Proper orthogonal decomposition (POD) is applied to reconstruct noisy data of blood flow...
Phase-Contrast Magnetic Resonance Imaging (PC-MRI) surpasses all other imaging methods in quality an...
The pathology of many cardiovascular diseases is believed to be heavily tied to local hemodynamics. ...
A numerical approach is presented to efficiently simulate time-resolved 3D phase-contrast Magnetic r...
International audienceA numerical approach is presented to efficiently simulate time-resolved 3D pha...
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...
International audienceA numerical approach is presented to efficiently simulate time-resolved 3D pha...
International audienceA numerical approach is presented to efficiently simulate time-resolved 3D pha...
Purpose Segmentation and reconstruction of arterial blood vessels is a fundamental step in the trans...
4D flow magnetic resonance imaging (MRI) is an emerging imaging technique where spatiotemporal 3D bl...
Traditionally, magnetic resonance imaging (MRI) of flow using phase contrast (PC) methods is accompl...
This thesis addresses thorough discussions on the improvement of hemodynamic analysis by four-dimens...
Four-dimensional (4D) flow MRI allows quantifying flow in blood vessels–non invasively and in vivo. ...