Unveiling the potential of wearable antennas and microwave technology in kidney cancer detection (Record no. 22871)

MARC details
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fixed length control field a
003 - CONTROL NUMBER IDENTIFIER
control field OSt
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20250515145122.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 250515b xxu||||| |||| 00| 0 eng d
040 ## - CATALOGING SOURCE
Original cataloging agency AIKTC-KRRC
Transcribing agency AIKTC-KRRC
100 ## - MAIN ENTRY--PERSONAL NAME
9 (RLIN) 26220
Author Sangeetha, R.
245 ## - TITLE STATEMENT
Title Unveiling the potential of wearable antennas and microwave technology in kidney cancer detection
250 ## - EDITION STATEMENT
Volume, Issue number Vol.105(6), Dec
260 ## - PUBLICATION, DISTRIBUTION, ETC.
Place of publication, distribution, etc. Mumbai
Name of publisher, distributor, etc. Springer
Year 2024
300 ## - PHYSICAL DESCRIPTION
Pagination 1835-1851p.
520 ## - SUMMARY, ETC.
Summary, etc. This article is dedicated to assisting healthcare professionals in promptly identifying and examining patients displaying symptoms that might indicate bladder and kidney cancer. Recently, wearable antennas have garnered significant attention from researchers and gained widespread popularity owing to their appealing features and potential applications. They are essential to wireless body area networks used in sports, healthcare, the military, and identity. Unlike traditional antennas, these devices are in immediate contact to the human body’s tissues, meaning that parameters such as gain, radiation pattern, bandwidth, return loss, directivity, efficiency, and specific absorption rate (SAR) are all impacted by interaction of human body tissues. The goal is to use the understanding of microwave signal interaction with bodily tissues to identify and pinpoint kidney cancers. When compared to healthy tissues, malignant tumors frequently display different dielectric characteristics. These dielectric properties, such as permittivity and conductivity, influence how tissues interact with electromagnetic waves. Microwave techniques have the potential to offer diagnostic information without the necessity for invasive surgical procedures. In this study, we develop metamaterial surfaces that offer a high degree of isolation and greatly lower SAR, with goal of improving the performance and minimizing any negative impact. The paper provides thorough analysis of the requirements and analytical elements pertinent to wearable antennas, such as SAR for on-body evaluation,
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
9 (RLIN) 4619
Topical term or geographic name entry element EXTC Engineering
700 ## - ADDED ENTRY--PERSONAL NAME
9 (RLIN) 26221
Co-Author Mohanbabu, G.
773 0# - HOST ITEM ENTRY
International Standard Serial Number 2250-2106
Title Journal of the institution of engineers (India): Series B
856 ## - ELECTRONIC LOCATION AND ACCESS
URL https://link.springer.com/article/10.1007/s40031-024-01126-8
Link text Click here
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Source of classification or shelving scheme Dewey Decimal Classification
Koha item type Articles Abstract Database
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    Dewey Decimal Classification     School of Engineering & Technology School of Engineering & Technology Archieval Section 15/05/2025   2025-0843 15/05/2025 15/05/2025 Articles Abstract Database
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