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2019

Journal Article

Using dielectric properties of solid fraction and water content to characterize tissues at different health and age conditions

Mohammed, Beadaa, Manoufali, Mohamed, Naqvi, Syed Akbar Raza, Bialkowski, Konstanty, Mills, Paul C. and Abbosh, Amin (2019). Using dielectric properties of solid fraction and water content to characterize tissues at different health and age conditions. IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology, 4 (1) 8892576, 69-77. doi: 10.1109/JERM.2019.2952054

Using dielectric properties of solid fraction and water content to characterize tissues at different health and age conditions

2018

Conference Publication

Changes in epidermal dielectric properties due to skin cancer across the band 1 to 50 GHz

Mohammed, B. J., Naqvi, S. A. R., Manoufali, M., Bialkowski, K. and Abbosh, A. M. (2018). Changes in epidermal dielectric properties due to skin cancer across the band 1 to 50 GHz. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346990

Changes in epidermal dielectric properties due to skin cancer across the band 1 to 50 GHz

2018

Conference Publication

Accurate fourth-order debye model for the head tissues across the 0.1–1 GHz band using metaheuristic genetic algorithm

Manoufali, Mohamed, Naqvi, Syed Akbar Raza and Abbosh, Amin M. (2018). Accurate fourth-order debye model for the head tissues across the 0.1–1 GHz band using metaheuristic genetic algorithm. Piscataway, NJ, United States: Institute of Electrical and Electronics Engineers. doi: 10.1109/jerm.2018.2809621

Accurate fourth-order debye model for the head tissues across the 0.1–1 GHz band using metaheuristic genetic algorithm

2018

Conference Publication

Development of 4th order optimized debye model for the human head tissues at the sub-1GHz

Manoufali, Mohamed, Naqvi, S. A. R. and Abbosh, Amin (2018). Development of 4th order optimized debye model for the human head tissues at the sub-1GHz. Australian Microwave Symposium (AMS), Brisbane, Australia, 6-7 February 2018. New York, NY, United States: IEEE. doi: 10.1109/AUSMS.2018.8346973

Development of 4th order optimized debye model for the human head tissues at the sub-1GHz

2017

Conference Publication

Fourth order debye model for the skin at the millimetre-wave band using heuristic genetic algorithm

Naqvi, S. A. R., Mohammed, B. and Abbosh, A. M. (2017). Fourth order debye model for the skin at the millimetre-wave band using heuristic genetic algorithm. 21st International Symposium on Antennas and Propagation, ISAP 2016, Okinawa, Japan, 24 - 28 October 2016. Piscataway, NJ, United States: Institute of Electrical and Electronics Engineers.

Fourth order debye model for the skin at the millimetre-wave band using heuristic genetic algorithm

2017

Conference Publication

Near-Field Tapered Waveguide Probe Operating at Millimeter Waves for Skin Cancer Detection

Khokhar, Umair, Naqvi, S. A. R., Al-Badri, Noor, Bialkowski, K. and Abbosh, Amin (2017). Near-Field Tapered Waveguide Probe Operating at Millimeter Waves for Skin Cancer Detection. International Symposium of IEEE-Antennas-and-Propagation-Society / USNC/URSI National Radio Science Meeting, San Diego CA, United States, Jul 09-14, 2017. Piscataway, NJ United States: Institute of Electrical and Electronics Engineers. doi: 10.1109/APUSNCURSINRSM.2017.8072440

Near-Field Tapered Waveguide Probe Operating at Millimeter Waves for Skin Cancer Detection

2017

Conference Publication

Skin tissue characterization of canine at microwave and millimeter-wave frequencies

Naqvi, Syed Akbar Raza, Manoufali, Mohamed, Al-Badri, N., Mohammed, Beadaa, Bialkowski, Konstanty and Abbosh, Amin (2017). Skin tissue characterization of canine at microwave and millimeter-wave frequencies. 2017 IEEE International Symposium on Antennas and Propagation & USNC/URSI National Radio Science Meeting, San Diego CA, USA, 9-14 July 2017. Piscataway, NJ., United States: IEEE. doi: 10.1109/APUSNCURSINRSM.2017.8072151

Skin tissue characterization of canine at microwave and millimeter-wave frequencies