Area of research
Radiology, Nuclear Medicine and Imaging · Biomedical Engineering
Research interest
Research interests include Magnetic resonance elastography, Elastography, Materials science, Medicine, Magnetic resonance imaging, and Imaging phantom.
MR elastography of soft porous tissue phantoms with varying macrostructure and pore pressure
Optical coherence elastography for assessing the influence of intraocular pressure on elastic wave dispersion in the cornea
Investigating the heterogeneity of viscoelastic properties in prostate cancer using MR elastography at 9.4T in fresh prostatectomy specimens
Tabletop MR elastography for investigating effects of the freeze-thaw cycle on the mechanical properties of biological tissues
Concurrent OCT and OCT angiography of retinal neurovascular degeneration in the 5XFAD Alzheimer’s disease mice
Spatial heterogeneity of hepatic fibrosis in primary sclerosing cholangitis vs. viral hepatitis assessed by MR elastography
Longitudinal study of sub‐regional cerebral viscoelastic properties of 5XFAD Alzheimer's disease mice using multifrequency MR elastography
Diagnostic performance of tomoelastography of the liver and spleen for staging hepatic fibrosis
Prostate cancer assessment using MR elastography of fresh prostatectomy specimens at 9.4 T
Comparison of non-invasive assessment of liver fibrosis in patients with alpha1-antitrypsin deficiency using magnetic resonance elastography (MRE), acoustic radiation force impulse (ARFI) Quantification, and 2D-shear wave elastography (2D-SWE)
Anisotropic composite material phantom to improve skeletal muscle characterization using magnetic resonance elastography
Simultaneous magnetic resonance and optical elastography acquisitions: Comparison of displacement images and shear modulus estimations using a single vibration source
Concurrent <scp>3D</scp> acquisition of diffusion tensor imaging and magnetic resonance elastography displacement data (<scp>DTI‐MRE</scp>): Theory and in vivo application
Cardiac MR elastography of the mouse: Initial results
Simultaneous, multidirectional acquisition of displacement fields in magnetic resonance elastography of the in vivo human brain
Simultaneous MR elastography and diffusion acquisitions: Diffusion-MRE (dMRE)
Monitoring Cartilage Tissue Engineering Using Magnetic Resonance Spectroscopy, Imaging, and Elastography
Sample interval modulation for the simultaneous acquisition of displacement vector data in magnetic resonance elastography: theory and application