Area of research
Radiology, Nuclear Medicine and Imaging · Cardiology and Cardiovascular Medicine
Research interest
Research interests include Cardiac Imaging and Diagnostics, Advanced MRI Techniques and Applications, Medical Imaging Techniques and Applications, and Cardiovascular Function and Risk Factors.
High-resolution non-contrast free-breathing coronary cardiovascular magnetic resonance angiography for detection of coronary artery disease: validation against invasive coronary angiography
Deep‐learning based super‐resolution for 3D isotropic coronary MR angiography in less than a minute
Clinical comparison of sub-mm high-resolution non-contrast coronary CMR angiography against coronary CT angiography in patients with low-intermediate risk of coronary artery disease: a single center trial
CINENet: deep learning-based 3D cardiac CINE MRI reconstruction with multi-coil complex-valued 4D spatio-temporal convolutions
From Compressed-Sensing to Artificial Intelligence-Based Cardiac MRI Reconstruction
3D whole-heart isotropic sub-millimeter resolution coronary magnetic resonance angiography with non-rigid motion-compensated PROST
Multi‐parametric liver tissue characterization using MR fingerprinting: Simultaneous T<sub>1</sub>, T<sub>2</sub>, T<sub>2</sub>*, and fat fraction mapping
Coronary Magnetic Resonance Angiography
3D free‐breathing cardiac magnetic resonance fingerprinting
Free-running cardiac magnetic resonance fingerprinting: Joint T1/T2 map and Cine imaging
Non-Rigid Respiratory Motion Estimation of Whole-Heart Coronary MR Images Using Unsupervised Deep Learning
A multi-scale variational neural network for accelerating motion-compensated whole-heart 3D coronary MR angiography
Respiratory motion-compensated high-resolution 3D whole-heart T1ρ mapping
3D whole‐heart isotropic‐resolution motion‐compensated joint T<sub>1</sub>/T<sub>2</sub> mapping and water/fat imaging
Motion-corrected 3D whole-heart water-fat high-resolution late gadolinium enhancement cardiovascular magnetic resonance imaging
<scp>T1</scp>, <scp>T2,</scp> and Fat Fraction Cardiac MR Fingerprinting: Preliminary Clinical Evaluation
Isotropic 3D Cartesian single breath‐hold CINE MRI with multi‐bin patch‐based low‐rank reconstruction
High‐dimensionality undersampled patch‐based reconstruction (HD‐PROST) for accelerated multi‐contrast MRI
Sparsity and locally low rank regularization for MR fingerprinting
Water–fat Dixon cardiac magnetic resonance fingerprinting
Free‐running 3D whole heart myocardial T<sub>1</sub> mapping with isotropic spatial resolution
Free-running simultaneous myocardial T1/T2 mapping and cine imaging with 3D whole-heart coverage and isotropic spatial resolution
Detection and Correction of Cardiac MRI Motion Artefacts During Reconstruction from k-space
Five‐minute whole‐heart coronary MRA with sub‐millimeter isotropic resolution, 100% respiratory scan efficiency, and 3D‐PROST reconstruction