Area of research
Electronic, Optical and Magnetic Materials · Biomedical Engineering
Research interest
Research focused on Microwave and Microwave imaging, with related work in Acoustics, Transducer, Breast imaging. Notable publications include 'Microwave-Induced Thermoacoustic Imaging Model for Potential Breast Cancer Detection', 'Computational Feasibility Study of Contrast-Enhanced Thermoacoustic Imaging for Breast Cancer Detection Using Realistic Numerical Breast Phantoms', and 'One-dimensionally oriented self-assembly of ordered mesoporous nanofibers featuring tailorable mesophases via kinetic control'.
One-dimensionally oriented self-assembly of ordered mesoporous nanofibers featuring tailorable mesophases via kinetic control
Cryptography Metasurface for One‐Time‐Pad Encryption and Massive Data Storage
Microwave-Induced Thermoacoustic Imaging for Embedded Explosives Detection in High-Water Content Medium
Microwave-Induced Thermoacoustic Communications
Thermoacoustic and photoacoustic characterizations of few-layer graphene by pulsed excitations
Computational Feasibility Study of Contrast-Enhanced Thermoacoustic Imaging for Breast Cancer Detection Using Realistic Numerical Breast Phantoms
Quality Improvement of Thermoacoustic Imaging Based on Compressive Sensing
Thermoacoustic applications in breast cancer imaging, non-contact explosive detection and communications
Non-contact thermoacoustic imaging based on laser and microwave vibrometry
Microwave-Induced Thermoacoustic Imaging Model for Potential Breast Cancer Detection
Spectroscopic thermoacoustic imaging of water and fat composition
Impact of Microwave Pulses on Thermoacoustic Imaging Applications