Huygens Principle-based Microwave Brain Imaging through Finite Difference Time Domain
Conference paper
Movafagh, M., Ghavami, N., Tiberi, G., Dudley-Mcevoy, S. and Ghavami, M. (2023). Huygens Principle-based Microwave Brain Imaging through Finite Difference Time Domain. 2023 IEEE Conference on Antenna Measurements & Applications. Genoa, Italy 15 - 17 Nov 2023 Institute of Electrical and Electronics Engineers (IEEE).
Authors | Movafagh, M., Ghavami, N., Tiberi, G., Dudley-Mcevoy, S. and Ghavami, M. |
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Type | Conference paper |
Abstract | This paper investigates the application of Huygens principle (HP) in brain imaging. We employ simulation techniques, specifically the Finite Difference Time Domain (FDTD) method, in order to comprehensively evaluate the efficacy of |
Keywords | Huygens Principle; FDTD; Microwave Imaging |
Year | 2023 |
Publisher | Institute of Electrical and Electronics Engineers (IEEE) |
Web address (URL) | https://2023ieeecama.org/ |
Accepted author manuscript | License File Access Level Open |
Publication dates | |
15 Nov 2023 | |
Publication process dates | |
Accepted | 01 Aug 2023 |
Deposited | 12 Sep 2023 |
https://openresearch.lsbu.ac.uk/item/94yx4
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Accepted author manuscript
Huygens Principle-based Microwave Brain Imaging.pdf | ||
License: CC BY 4.0 | ||
File access level: Open |
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