Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer

One of the deadliest diseases in this day and age is cancer. In order to find the best treatment, numerous researchers from various professions are working together. Magnetic nanoparticle hyperthermia is one of the therapeutic options (MNPH). In order to do this, magnetic nanoparticles (MNPs) are in...

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Main Author: Nour, Amro (author)
Published: 2023
Online Access:http://hdl.handle.net/11675/10964
http://www.scopus.com/inward/record.url?scp=85171993861&partnerID=8YFLogxK
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author Nour, Amro
author_facet Nour, Amro
author_role author
dc.creator.none.fl_str_mv Nour, Amro
dc.date.none.fl_str_mv 2023-08-28
2024-02-05T08:32:43Z
2024-02-05T08:32:43Z
dc.identifier.none.fl_str_mv 10.1109/PIERS59004.2023.10221303
9798350312843
http://hdl.handle.net/11675/10964
http://www.scopus.com/inward/record.url?scp=85171993861&partnerID=8YFLogxK
dc.relation.none.fl_str_mv Electrical and Computer Engineering
dc.title.none.fl_str_mv Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer
dc.type.none.fl_str_mv Conference Presentations/Proceedings
info:eu-repo/semantics/publishedVersion
description One of the deadliest diseases in this day and age is cancer. In order to find the best treatment, numerous researchers from various professions are working together. Magnetic nanoparticle hyperthermia is one of the therapeutic options (MNPH). In order to do this, magnetic nanoparticles (MNPs) are inserted into the tissues of cancerous tumors, and an external coil carrying current is used to produce an alternating magnetic field (AMF) that activates the MNPs inside the tumor tissues. In exchange, activation of the MNPs would provide concentrated heat at the sites of the tumors, which has the potential to be potent enough to kill tumor tissues. Eddy currents are produced at nearby healthy tissues as a result of alternating magnetic and electric fields, which is also known as a magnetic field reversal. Particularly when large currents (up to several hundred Amps) offer the necessary AMF intensity to treat deep tissue malignancies, the associated eddy currents cause unwelcome heat and harm the nearby healthy tissues. A complete computational and graphical electromagnetic examination of a genuine virtual human model is presented in this research. With various coil designs, specific absorption rates (SARs) are computed and displayed for various bodily tissues. The ideal coil arrangement with the lowest eddy currents on the surrounding healthy tissues and the highest AMF at the MNPs injected into the prostatic tumor was determined.
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identifier_str_mv 10.1109/PIERS59004.2023.10221303
9798350312843
network_acronym_str AUKR
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oai_identifier_str oai:dspace.auk.edu.kw:11675/10964
publishDate 2023
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spelling Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate CancerNour, AmroOne of the deadliest diseases in this day and age is cancer. In order to find the best treatment, numerous researchers from various professions are working together. Magnetic nanoparticle hyperthermia is one of the therapeutic options (MNPH). In order to do this, magnetic nanoparticles (MNPs) are inserted into the tissues of cancerous tumors, and an external coil carrying current is used to produce an alternating magnetic field (AMF) that activates the MNPs inside the tumor tissues. In exchange, activation of the MNPs would provide concentrated heat at the sites of the tumors, which has the potential to be potent enough to kill tumor tissues. Eddy currents are produced at nearby healthy tissues as a result of alternating magnetic and electric fields, which is also known as a magnetic field reversal. Particularly when large currents (up to several hundred Amps) offer the necessary AMF intensity to treat deep tissue malignancies, the associated eddy currents cause unwelcome heat and harm the nearby healthy tissues. A complete computational and graphical electromagnetic examination of a genuine virtual human model is presented in this research. With various coil designs, specific absorption rates (SARs) are computed and displayed for various bodily tissues. The ideal coil arrangement with the lowest eddy currents on the surrounding healthy tissues and the highest AMF at the MNPs injected into the prostatic tumor was determined.2024-02-05T08:32:43Z2024-02-05T08:32:43Z2023-08-28Conference Presentations/Proceedingsinfo:eu-repo/semantics/publishedVersion10.1109/PIERS59004.2023.102213039798350312843http://hdl.handle.net/11675/10964http://www.scopus.com/inward/record.url?scp=85171993861&partnerID=8YFLogxKElectrical and Computer Engineeringoai:dspace.auk.edu.kw:11675/109642025-06-18T08:48:44Z
spellingShingle Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer
Nour, Amro
status_str publishedVersion
title Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer
title_full Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer
title_fullStr Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer
title_full_unstemmed Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer
title_short Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer
title_sort Investigating Different Coil Configurations during Magnetic Nanoparticles Hyperthermia for Prostate Cancer
url http://hdl.handle.net/11675/10964
http://www.scopus.com/inward/record.url?scp=85171993861&partnerID=8YFLogxK