Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure

Interest in the development of hyperthermia for cancer procedure is growth explosively all over the years as it is able to damage and kill the cancer cell non-invasively. An EBG-M antenna is designed with FDTD simulation packages, which is then applied towards treated cancerous area, where for the p...

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Main Authors: Lias, K., Buniyamin, N., Narihan, M.Z.A.
Format: Article
Language:English
Published: UTM Press 2016
Subjects:
Online Access:http://ir.unimas.my/id/eprint/12519/
http://ir.unimas.my/id/eprint/12519/1/SIMULATION%20STUDY%20-%20Copy.pdf
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author Lias, K.
Buniyamin, N.
Narihan, M.Z.A.
author_facet Lias, K.
Buniyamin, N.
Narihan, M.Z.A.
author_sort Lias, K.
building UNIMAS Institutional Repository
collection Online Access
description Interest in the development of hyperthermia for cancer procedure is growth explosively all over the years as it is able to damage and kill the cancer cell non-invasively. An EBG-M antenna is designed with FDTD simulation packages, which is then applied towards treated cancerous area, where for the purpose of this simulation studies, breast is developed as the targeted cancer area to be treated. The radiation absorption is presented as the results obtained to be compared with previous works and also to be analyzed. It has been recognized that the designed antenna or also called as the applicator is able to offer depth radiation absorption and also improved the focusing, which is represented by the specific absorption rate (SAR) distribution towards breast hyperthermia cancer procedure.
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spelling unimas-125192022-05-30T06:19:44Z http://ir.unimas.my/id/eprint/12519/ Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure Lias, K. Buniyamin, N. Narihan, M.Z.A. RZ Other systems of medicine Interest in the development of hyperthermia for cancer procedure is growth explosively all over the years as it is able to damage and kill the cancer cell non-invasively. An EBG-M antenna is designed with FDTD simulation packages, which is then applied towards treated cancerous area, where for the purpose of this simulation studies, breast is developed as the targeted cancer area to be treated. The radiation absorption is presented as the results obtained to be compared with previous works and also to be analyzed. It has been recognized that the designed antenna or also called as the applicator is able to offer depth radiation absorption and also improved the focusing, which is represented by the specific absorption rate (SAR) distribution towards breast hyperthermia cancer procedure. UTM Press 2016 Article PeerReviewed text en http://ir.unimas.my/id/eprint/12519/1/SIMULATION%20STUDY%20-%20Copy.pdf Lias, K. and Buniyamin, N. and Narihan, M.Z.A. (2016) Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure. Jurnal Teknologi, 78 (5-6). pp. 75-81. ISSN 2180–3722 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84968791836&partnerID=40&md5=9afda4e8601a0c83584a8369c89cc44f DOI: 10.11113/jt.v78.8641
spellingShingle RZ Other systems of medicine
Lias, K.
Buniyamin, N.
Narihan, M.Z.A.
Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure
title Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure
title_full Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure
title_fullStr Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure
title_full_unstemmed Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure
title_short Simulation study of an EBG-M applicator towards non-invasive breast hyperthermia cancer procedure
title_sort simulation study of an ebg-m applicator towards non-invasive breast hyperthermia cancer procedure
topic RZ Other systems of medicine
url http://ir.unimas.my/id/eprint/12519/
http://ir.unimas.my/id/eprint/12519/
http://ir.unimas.my/id/eprint/12519/
http://ir.unimas.my/id/eprint/12519/1/SIMULATION%20STUDY%20-%20Copy.pdf