In this paper we investigate the detection of breast cancer using two-dimensional slices of realistic numerical phantoms employing time reversal microwave imaging. We used maximum-likelihood estimation coupled with time reversal technique to detect and estimate the location of tumor using FDTD based breast phantoms that contain dense fibroglandular tissue clutter. We show that time reversal maximum-likelihood estimation can detect and accurately localize tumors even in highly dense breasts where the dielectric contrast between healthy dense breast tissue and cancerous lesions is quite low without requiring any contrast enhancing agents. © 2013 IEEE
Microwave detection of breast tumours is a non-ionising and potentially low-cost and more certain al...
In this paper, a finite difference time domain (FDTD) method is applied to investigate capabilities ...
Abstract—This paper presents measurements performed with our time-domain system for microwave breast...
Imaging of malignant tissues at early stage is a challenging problem because of higher tissue hetero...
We use time reversal microwave imaging to detect and classify benign and malignant breast cancer les...
This paper studies the decomposition of the time reversal operator (DORT, by the French acronym) tec...
Here we propose novel beamspace processing techniques to enhance the existing time reversal imaging ...
Breast cancer is a common type of cancer among women all over the world. Successful treatment and pr...
Abstract—In this work, we present advanced testing scenarios of our microwave time-domain breast can...
Here we present the application of Time reversal-MUSIC algorithm for the microwave imaging of early ...
In this paper, an inverse scattering technique referred to as the filtered forward-backward time-ste...
University of Technology, Sydney. Faculty of Engineering and Information Technology.In this thesis, ...
©2014. American Geophysical Union. All Rights Reserved. This paper deals with the coherent processin...
Purpose Microwave imaging of breast cancer is considered and a new microwave imaging prototype inclu...
Abstract — This paper presents measurements performed on glandular phantoms using a time-domain mic...
Microwave detection of breast tumours is a non-ionising and potentially low-cost and more certain al...
In this paper, a finite difference time domain (FDTD) method is applied to investigate capabilities ...
Abstract—This paper presents measurements performed with our time-domain system for microwave breast...
Imaging of malignant tissues at early stage is a challenging problem because of higher tissue hetero...
We use time reversal microwave imaging to detect and classify benign and malignant breast cancer les...
This paper studies the decomposition of the time reversal operator (DORT, by the French acronym) tec...
Here we propose novel beamspace processing techniques to enhance the existing time reversal imaging ...
Breast cancer is a common type of cancer among women all over the world. Successful treatment and pr...
Abstract—In this work, we present advanced testing scenarios of our microwave time-domain breast can...
Here we present the application of Time reversal-MUSIC algorithm for the microwave imaging of early ...
In this paper, an inverse scattering technique referred to as the filtered forward-backward time-ste...
University of Technology, Sydney. Faculty of Engineering and Information Technology.In this thesis, ...
©2014. American Geophysical Union. All Rights Reserved. This paper deals with the coherent processin...
Purpose Microwave imaging of breast cancer is considered and a new microwave imaging prototype inclu...
Abstract — This paper presents measurements performed on glandular phantoms using a time-domain mic...
Microwave detection of breast tumours is a non-ionising and potentially low-cost and more certain al...
In this paper, a finite difference time domain (FDTD) method is applied to investigate capabilities ...
Abstract—This paper presents measurements performed with our time-domain system for microwave breast...