3D Whole-ventricle, Free-Breathing, Non-ECG, T1-T2-B1+ Mapping and Cine Imaging with Cardiac MR Multitasking

Altered T1 and T2 relaxation times in leg muscles are linked to hemodynamic and ambulatory parameters in patients with Peripheral Artery Disease.

Assessment of different b values in motion-controlled myocardium spin echo diffusion tensor imaging in vivo

Assessment of myocardial involvement characteristics by cardiac MR imaging in patients with polymyositis and dermatomyositis

Carotid T1 mapping with Muscle Referenced B1 Mapping Correction Using Variable Flip Angle Imaging without Extra Scan

Characterization of Cardiac Amyloidosis using Cardiac Magnetic Resonance Fingerprinting: Preliminary Results

Clinical validation of a dedicated motion correction algorithm for cardiac MOLLI series using a quantitative metric

Comparison of free-breathing self-gated continuous IR spiral T1 mapping: dual flip angle versus Bloch-Siegert B1-corrected techniques

A Comparison of Metal Artifacts in Cardiovascular MRI at 0.55T and 1.5T

Early Cardiac Involvement Detectedby CMR Feature Tracking in Idiopathic Inflammatory Myopathywith Preserved Ejection Fraction

Evaluating the Myocardial Diffusion Status in Cardiac Amyloidosis: A Novel Intravoxel Incoherent Motion Diffusion-weighted MR Imaging Study

Evaluation of cardiac pre- and post-T1 maps registration for extracellular volume computation

Author:Habib Rebbah  Anaïs Bernard  Julien ROUYER  Timothé Boutelier  

Session Type:Digital Poster  

Session Date:Thursday, 20 May 2021  

Topic:Quantitative Cardiovascular Tissue Characterization  

Session Name:Cardiovascular Parameter Mapping  

Program Number:3616  

Room Session:Concurrent 3  

Institution:Olea Medical  

Evaluation of various image descriptor for motion correction between pre- and post-injected cardiac T1 maps, based on a demon algorithm

Author:Habib Rebbah  Anaîs Bernard  Julien ROUYER  Timothé Boutelier  

Session Type:Digital Poster  

Session Date:Thursday, 20 May 2021  

Topic:Quantitative Cardiovascular Tissue Characterization  

Session Name:Cardiovascular Parameter Mapping  

Program Number:3601  

Room Session:Concurrent 3  

Institution:Olea Medical  

A Framework to extract and visualize the myofiber helix angle locally and globally from the cardiac diffusion tensor images

Imaging of cardiac skeleton without contrast agents

Improvement of multi-echo gradient-spin-echo (mGraSE) myocardial T2 mapping utilizing Compressed SENSE reconstruction framework

Improving T1 mapping robustness by automatic segmentation of myocardial tissue in MOLLI series

Metabolic changes in coronary artery disease assessed using 1H NMR Metabolomics

Microstructure-Based Simulation of Myocardial Diffusion Using Extended Volume Confocal Microscopy

Native T1 and T2 mapping cardiovascular magnetic resonance for detection of cardiac allograft vasculopathy after heart transplantation

A novel MOLLI T1 analysis method with data matching for reduced T1 underestimation

Optimization of B0 Simulation Strategy in the Human Heart based on CT Images at limited Field of View

Probing Human Myocardial Krebs Cycle Metabolism and Response to Glucose Challenge using Hyperpolarized [2-13C]Pyruvate MR Spectroscopy

ProMyoT1: Open-source Inversion recovery myocardial T1 mapping sequence for fast prototyping

Quantification of strain analysis in coronary chronic total occlusion: Acardiovascular magnetic resonance imaging follow-up study

Quantitative Susceptibility Mapping for Mitral Annulus Calcification Detection via Validation of Computed Tomography/Echocardiography

Right ventricular T1 mapping using a novel STEAM-based approach: STEAM-SASHA

Self-Navigated Spiral T1 CMR Multitasking

Simultaneous Multi-slice Cardiac MR Multitasking for Motion-Resolved, Non-ECG, Free-Breathing Joint T1-T2 Mapping

Simultaneous T1, T2 and T1? cardiac Magnetic Resonance Fingerprinting for Contrast-free Myocardial Tissue Characterization

The suggested possibility of the T2rho contrast in the modified Look-Locker MRI technique used for the T1 quantification

T2* VERSUS NATIVE T1, T2 MAPPING IN PATIENTS WITH SUSPECTED MYOCARDIAL IRON OVERLOAD

Three-dimensional cardiac T1 mapping using subspace and sparsity constrained direct estimation