Systemic Overview of Microstrip Patch Antenna’s for Different Biomedical Applications

Timely diagnosis is the most important parameter for the detection and hindrance with tissues (infected). Many conventional techniques are used for the determination of the chronic disease like MRI, X-ray, mammography, ultrasound and other diagnosing methods. Nevertheless, they have some limitations...

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Main Authors: Govind Arora, Paramjot Maman, Ameya Sharma, Nitin Verma, Vivek Puri
Format: Article
Language:English
Published: Tabriz University of Medical Sciences 2021-06-01
Series:Advanced Pharmaceutical Bulletin
Subjects:
Online Access:https://apb.tbzmed.ac.ir/PDF/apb-11-439.pdf
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author Govind Arora
Paramjot Maman
Ameya Sharma
Nitin Verma
Vivek Puri
author_facet Govind Arora
Paramjot Maman
Ameya Sharma
Nitin Verma
Vivek Puri
author_sort Govind Arora
collection DOAJ
description Timely diagnosis is the most important parameter for the detection and hindrance with tissues (infected). Many conventional techniques are used for the determination of the chronic disease like MRI, X-ray, mammography, ultrasound and other diagnosing methods. Nevertheless, they have some limitations. We epitomize between 4 and 34 % of all carcinogenic tissues are lacking because of weak, in adequate malignant/benign cancer tissue on the contrary. So, an effective alternative method is the valid concern in the field of medical right now. Imaging with the help of patch antenna to detect chronic disease like breast cancer, oxidative stress syndrome etc. it has been proved to be a suitable potential method, and there are many works in this area. All materials have different conductivity and permittivity. With the help of these antennas, a 3D tissue structure which has different conductivity and permittivity is modelled in high-frequency structure simulator through finite element method which resolves electromagnetic field values and a microstrip patch antenna operation process. As compared with conventional antennas, micro strip patch antennas have enhanced benefits and better prospects. An integrated Antenna plays an important or crucial role for supporting many applications in biomedical, commercial and in military fields. The Antenna designed for these applications should be wideband, not sensitive to the human body. In this present review, the precise application of the Antenna in different biomedical aspects is considered. Furthermore, the author has also discussed the analytical results using simulation models and experimental results for some of the significantdisease.
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spelling doaj.art-cc2bd3882b704f8387bc25a60be4ffdb2022-12-21T20:06:16ZengTabriz University of Medical SciencesAdvanced Pharmaceutical Bulletin2228-58812251-73082021-06-0111343944910.34172/apb.2021.051apb-28340Systemic Overview of Microstrip Patch Antenna’s for Different Biomedical ApplicationsGovind Arora0Paramjot Maman1Ameya Sharma2Nitin Verma3Vivek Puri4Chitkara College of Pharmacy, Chitkara University, Punjab, India.Parexel International Limited, Mohali, Punjab, India.Chitkara University School of Pharmacy, Chitkara University, Himachal Pradesh, India.Chitkara University School of Pharmacy, Chitkara University, Himachal Pradesh, India.Chitkara University School of Pharmacy, Chitkara University, Himachal Pradesh, India.Timely diagnosis is the most important parameter for the detection and hindrance with tissues (infected). Many conventional techniques are used for the determination of the chronic disease like MRI, X-ray, mammography, ultrasound and other diagnosing methods. Nevertheless, they have some limitations. We epitomize between 4 and 34 % of all carcinogenic tissues are lacking because of weak, in adequate malignant/benign cancer tissue on the contrary. So, an effective alternative method is the valid concern in the field of medical right now. Imaging with the help of patch antenna to detect chronic disease like breast cancer, oxidative stress syndrome etc. it has been proved to be a suitable potential method, and there are many works in this area. All materials have different conductivity and permittivity. With the help of these antennas, a 3D tissue structure which has different conductivity and permittivity is modelled in high-frequency structure simulator through finite element method which resolves electromagnetic field values and a microstrip patch antenna operation process. As compared with conventional antennas, micro strip patch antennas have enhanced benefits and better prospects. An integrated Antenna plays an important or crucial role for supporting many applications in biomedical, commercial and in military fields. The Antenna designed for these applications should be wideband, not sensitive to the human body. In this present review, the precise application of the Antenna in different biomedical aspects is considered. Furthermore, the author has also discussed the analytical results using simulation models and experimental results for some of the significantdisease.https://apb.tbzmed.ac.ir/PDF/apb-11-439.pdfpatch antennabiomaterial for antennabiomedical applicationcancerneurodegeneration
spellingShingle Govind Arora
Paramjot Maman
Ameya Sharma
Nitin Verma
Vivek Puri
Systemic Overview of Microstrip Patch Antenna’s for Different Biomedical Applications
Advanced Pharmaceutical Bulletin
patch antenna
biomaterial for antenna
biomedical application
cancer
neurodegeneration
title Systemic Overview of Microstrip Patch Antenna’s for Different Biomedical Applications
title_full Systemic Overview of Microstrip Patch Antenna’s for Different Biomedical Applications
title_fullStr Systemic Overview of Microstrip Patch Antenna’s for Different Biomedical Applications
title_full_unstemmed Systemic Overview of Microstrip Patch Antenna’s for Different Biomedical Applications
title_short Systemic Overview of Microstrip Patch Antenna’s for Different Biomedical Applications
title_sort systemic overview of microstrip patch antenna s for different biomedical applications
topic patch antenna
biomaterial for antenna
biomedical application
cancer
neurodegeneration
url https://apb.tbzmed.ac.ir/PDF/apb-11-439.pdf
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