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A Versatile and Ubiquitous IoT-Based Smart Metabolic and Immune Monitoring System

In the present medical age, the focus on prevention and prediction is achieved using the medical internet of things. With a broad and complete framework, effective behavioral, environmental, and physiological criteria are necessary to govern the major healthcare sectors. Wearables play an essential...

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Autores principales: Arunkumar, N., Pandimurugan, V., Hema, M. S., Azath, H., Hariharasitaraman, S., Thilagaraj, M., Govindan, Petchinathan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8906964/
https://www.ncbi.nlm.nih.gov/pubmed/35281186
http://dx.doi.org/10.1155/2022/9441357
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author Arunkumar, N.
Pandimurugan, V.
Hema, M. S.
Azath, H.
Hariharasitaraman, S.
Thilagaraj, M.
Govindan, Petchinathan
author_facet Arunkumar, N.
Pandimurugan, V.
Hema, M. S.
Azath, H.
Hariharasitaraman, S.
Thilagaraj, M.
Govindan, Petchinathan
author_sort Arunkumar, N.
collection PubMed
description In the present medical age, the focus on prevention and prediction is achieved using the medical internet of things. With a broad and complete framework, effective behavioral, environmental, and physiological criteria are necessary to govern the major healthcare sectors. Wearables play an essential role in personal health monitoring data measurement and processing. We wish to design a variable and flexible frame for broad parameter monitoring in accordance with the convenient mode of wearability. In this study, an innovative prototype with a handle and a modular IoT portal is designed for environmental surveillance. The prototype examines the most significant parameters of the surroundings. This strategy allows a bidirectional link between end users and medicine via the IoT gateway as an intermediate portal for users with IoT servers in real time. In addition, the doctor may configure the necessary parameters of measurements via the IoT portal and switch the sensors on the wearables as a real-time observer for the patient. Thus, based on goal analysis, patient situation, specifications, and requests, medications may define setup criteria for calculation. With regard to privacy, power use, and computation delays, we established this system's performance link for three common IoT healthcare circumstances. The simulation results show that this technique may minimize processing time by 25.34%, save energy level up to 72.25%, and boost the privacy level of the IoT medical device to 17.25% compared to the benchmark system.
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spelling pubmed-89069642022-03-10 A Versatile and Ubiquitous IoT-Based Smart Metabolic and Immune Monitoring System Arunkumar, N. Pandimurugan, V. Hema, M. S. Azath, H. Hariharasitaraman, S. Thilagaraj, M. Govindan, Petchinathan Comput Intell Neurosci Research Article In the present medical age, the focus on prevention and prediction is achieved using the medical internet of things. With a broad and complete framework, effective behavioral, environmental, and physiological criteria are necessary to govern the major healthcare sectors. Wearables play an essential role in personal health monitoring data measurement and processing. We wish to design a variable and flexible frame for broad parameter monitoring in accordance with the convenient mode of wearability. In this study, an innovative prototype with a handle and a modular IoT portal is designed for environmental surveillance. The prototype examines the most significant parameters of the surroundings. This strategy allows a bidirectional link between end users and medicine via the IoT gateway as an intermediate portal for users with IoT servers in real time. In addition, the doctor may configure the necessary parameters of measurements via the IoT portal and switch the sensors on the wearables as a real-time observer for the patient. Thus, based on goal analysis, patient situation, specifications, and requests, medications may define setup criteria for calculation. With regard to privacy, power use, and computation delays, we established this system's performance link for three common IoT healthcare circumstances. The simulation results show that this technique may minimize processing time by 25.34%, save energy level up to 72.25%, and boost the privacy level of the IoT medical device to 17.25% compared to the benchmark system. Hindawi 2022-03-02 /pmc/articles/PMC8906964/ /pubmed/35281186 http://dx.doi.org/10.1155/2022/9441357 Text en Copyright © 2022 N. Arunkumar et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Arunkumar, N.
Pandimurugan, V.
Hema, M. S.
Azath, H.
Hariharasitaraman, S.
Thilagaraj, M.
Govindan, Petchinathan
A Versatile and Ubiquitous IoT-Based Smart Metabolic and Immune Monitoring System
title A Versatile and Ubiquitous IoT-Based Smart Metabolic and Immune Monitoring System
title_full A Versatile and Ubiquitous IoT-Based Smart Metabolic and Immune Monitoring System
title_fullStr A Versatile and Ubiquitous IoT-Based Smart Metabolic and Immune Monitoring System
title_full_unstemmed A Versatile and Ubiquitous IoT-Based Smart Metabolic and Immune Monitoring System
title_short A Versatile and Ubiquitous IoT-Based Smart Metabolic and Immune Monitoring System
title_sort versatile and ubiquitous iot-based smart metabolic and immune monitoring system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8906964/
https://www.ncbi.nlm.nih.gov/pubmed/35281186
http://dx.doi.org/10.1155/2022/9441357
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