Area of research
Biomedical Engineering · Radiology, Nuclear Medicine and Imaging
Research interest
Research focused on Elastography and Optical coherence tomography, with related work in Cornea, Elasticity (physics), Viscoelasticity. Notable publications include 'Optical coherence elastography assessment of corneal viscoelasticity with a modified Rayleigh-Lamb wave model', 'Assessing Age-Related Changes in the Biomechanical Properties of Rabbit Lens Using a Coaligned Ultrasound and Optical Coherence Elastography System', and 'Quantitative assessment of corneal viscoelasticity using optical coherence elastography and a modified Rayleigh–Lamb equation'.
In Vivo Safety Evaluation of Acoustic Radiation Force for Optical Coherence Elastography of the Crystalline Lens
Acoustic Radiation Force Optical Coherence Elastography of the Crystalline Lens: Safety
<i>In Vivo</i> Human Corneal Shear‐wave Optical Coherence Elastography
Characterization of natural frequencies from nanoscale tissue oscillations using dynamic optical coherence elastography
Quantifying the effects of hydration on corneal stiffness with noncontact optical coherence elastography
Effects of Thickness on Corneal Biomechanical Properties Using Optical Coherence Elastography
Optical coherence elastography assessment of corneal viscoelasticity with a modified Rayleigh-Lamb wave model
Investigating Elastic Anisotropy of the Porcine Cornea as a Function of Intraocular Pressure With Optical Coherence Elastography
Evaluating the Effects of Riboflavin/UV-A and Rose-Bengal/Green Light Cross-Linking of the Rabbit Cornea by Noncontact Optical Coherence Elastography
Assessing the effects of riboflavin/UV-A crosslinking on porcine corneal mechanical anisotropy with optical coherence elastography
Analysis of the effect of the fluid-structure interface on elastic wave velocity in cornea-like structures by OCE and FEM
Assessing Age-Related Changes in the Biomechanical Properties of Rabbit Lens Using a Coaligned Ultrasound and Optical Coherence Elastography System
Quantitative assessment of corneal viscoelasticity using optical coherence elastography and a modified Rayleigh–Lamb equation
Quantitative methods for reconstructing tissue biomechanical properties in optical coherence elastography: a comparison study
Noncontact Elastic Wave Imaging Optical Coherence Elastography for Evaluating Changes in Corneal Elasticity Due to Crosslinking
The dynamic deformation of a layered viscoelastic medium under surface excitation
Assessing the mechanical properties of tissue-mimicking phantoms at different depths as an approach to measure biomechanical gradient of crystalline lens