Area of research
Radiology, Nuclear Medicine and Imaging · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Computer science, Magnetic resonance imaging, Artificial intelligence, Nuclear magnetic resonance, Medicine, and Iterative reconstruction.
Scalable Hyperpolarized MRI Enabled by Ace‐SABRE of [1‐ <sup>13</sup> C]Pyruvate
Quantifying White Matter Hyperintensity and Brain Volumes in Heterogeneous Clinical and Low-Field Portable MRI
Synthetic data in generalizable, learning-based neuroimaging
Enhancing organ and vascular contrast in preclinical ultra-low field MRI using superparamagnetic iron oxide nanoparticles
Diffusion‐Weighted Imaging Fluid‐Attenuated Inversion Recovery Mismatch on Portable, Low‐Field Magnetic Resonance Imaging Among Acute Stroke Patients
Toward Ultra‐High‐Quality‐Factor Wireless Masing Magnetic Resonance Sensing
Toward Ultra‐High‐Quality‐Factor Wireless Masing Magnetic Resonance Sensing
Breast imaging with an ultra-low field MRI scanner: a pilot study
Brain imaging with portable low-field MRI
Detection of Intracerebral Hemorrhage Using Low-Field, Portable Magnetic Resonance Imaging in Patients With Stroke
Real‐time radial reconstruction with domain transform manifold learning for MRI‐guided radiotherapy
<sup>13</sup>C Radiofrequency Amplification by Stimulated Emission of Radiation Threshold Sensing of Chemical Reactions
Quantitative Brain Morphometry of Portable Low-Field-Strength MRI Using Super-Resolution Machine Learning
Boosting the signal-to-noise of low-field MRI with deep learning image reconstruction
A portable scanner for magnetic resonance imaging of the brain
High-sensitivity in vivo contrast for ultra-low field magnetic resonance imaging using superparamagnetic iron oxide nanoparticles
Image reconstruction by domain-transform manifold learning
MR fingerprinting Deep RecOnstruction NEtwork (DRONE)
Nanodiamond-enhanced MRI via in situ hyperpolarization
Low-Cost High-Performance MRI
Two‐dimensional imaging in a lightweight portable MRI scanner without gradient coils