Area of research
Radiology, Nuclear Medicine and Imaging · Cardiology and Cardiovascular Medicine
Research interest
Research interests include Advanced MRI Techniques and Applications, Cardiac Imaging and Diagnostics, Cardiovascular Function and Risk Factors, and Advanced Neuroimaging Techniques and Applications.
Biorobotic hybrid heart as a benchtop cardiac mitral valve simulator
AI‐Powered Multimodal Modeling of Personalized Hemodynamics in Aortic Stenosis
Abstract 4137796: Novel Deep Learning Aligned Strain Techniques in Repaired Tetralogy of Fallot
Cilia function as calcium-mediated mechanosensors that instruct left-right asymmetry
Soft robotic patient-specific hydrodynamic model of aortic stenosis and ventricular remodeling
Robotic right ventricle is a biohybrid platform that simulates right ventricular function in (patho)physiological conditions and intervention
A soft robotic sleeve mimicking the haemodynamics and biomechanics of left ventricular pressure overload and aortic stenosis
Translating Imaging Into 3D Printed Cardiovascular Phantoms
Cine gastric <scp>MRI</scp> reveals altered <scp>Gut–Brain</scp> Axis in Functional Dyspepsia: gastric motility is linked with brainstem‐cortical <scp>fMRI</scp> connectivity
An organosynthetic dynamic heart model with enhanced biomimicry guided by cardiac diffusion tensor imaging
Free‐breathing diffusion tensor MRI of the whole left ventricle using second‐order motion compensation and multitasking respiratory motion correction
Three‐dimensional simultaneous brain T<sub>1</sub>, T<sub>2</sub>, and ADC mapping with MR Multitasking
Diffusion tensor-MRI detects exercise-induced neuroplasticity in the hippocampal microstructure in mice
Magnetic resonance multitasking for motion-resolved quantitative cardiovascular imaging
Free‐breathing, non‐ECG, continuous myocardial T<sub>1</sub> mapping with cardiovascular magnetic resonance multitasking
In vivo diffusion‐tensor MRI of the human heart on a 3 tesla clinical scanner: An optimized second order (M2) motion compensated diffusion‐preparation approach
In vivo contrast free chronic myocardial infarction characterization using diffusion-weighted cardiovascular magnetic resonance
Quantifying diffusion MRI tractography of the corticospinal tract in brain tumors with deterministic and probabilistic methods
In vivo three‐dimensional high resolution cardiac diffusion‐weighted MRI: A motion compensated diffusion‐prepared balanced steady‐state free precession approach