3D Whole-heart Motion Compensated Grey-blood Late Gadolinium Enhancement Imaging

AI-driven Multi-Feature based Blood Hematocrit Prediction for Myocardial Extracellular Volume Quantification

Fast Myocardial T1 Mapping in Mice at 11.7 T using DESPOT and continuous tiny golden Angle Acquisitions

Author:Tobias Speidel  Hao Li  Micha Bischoff  Patrick Metze  Volker Rasche  

Institution:Ulm University  Ulm University Medical Center  

Session Type:Digital Poster  

Session Live Q&A Date:Digital Poster (All Week)  

Topic:Myocardial Tissue Characterization and Perfusion  

Session Name:Myocardial Tissue Characterization 1  

Program Number:2056  

Room Live Q&A Session:

Fast T1rho mapping in mice using an optimized Bloch simulation based radial sampling pattern

Impact of calibration-based coil combination on myocardial fibrosis assessment with a 3D Delayed Myocardial Enhancement sequence prototype

Influence of hydration status on myocardial T1 and T2 relaxation time measurements: an intraindividual study in healthy volunteers

Magnetization Transfer Contribution to Balanced SSFP Image Contrast in Chronic Myocardial Infarction

Model-based reconstruction for simultaneous multi-slice myocardial T1 mapping using single-shot inversion-recovery radial FLASH

Motion-Sensitive (MoSe) CINE imaging: utility for improving robustness of myocardial quantitative mapping

Optimizing Myocardium T2* Mapping using a Novel Multi-Dimension Integration (MDI) Method

Right ventriclar myocardial strain in chronic total occlusion patients by cardiac magnetic resonance tissue tracking: a polit study

Author:Xin Li  Zhiyong Li  Qingwei Song  Ailian Liu  

Institution:First affiliated Hospital of dalian medical University  

Session Type:Digital Poster  

Session Live Q&A Date:Digital Poster (All Week)  

Topic:Myocardial Tissue Characterization and Perfusion  

Session Name:Myocardial Tissue Characterization 1  

Program Number:2051  

Room Live Q&A Session:

Sensitivity of Cardiac Diffusion Encoding Waveforms to Myocardial Extracellular Volume: A simulation study