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Stefan cel Mare
University of Suceava
Faculty of Electrical Engineering and
Computer Science
13, Universitatii Street
Suceava - 720229
ROMANIA

Print ISSN: 1582-7445
Online ISSN: 1844-7600
WorldCat: 643243560
doi: 10.4316/AECE


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  2/2017 - 2

 HIGH-IMPACT PAPER 

An Internet of Things Framework for Remote Monitoring of the HealthCare Parameters

UNGUREAN, I. See more information about UNGUREAN, I. on SCOPUS See more information about UNGUREAN, I. on IEEExplore See more information about UNGUREAN, I. on Web of Science, BREZULIANU, A. See more information about BREZULIANU, A. on SCOPUS See more information about BREZULIANU, A. on SCOPUS See more information about BREZULIANU, A. on Web of Science
 
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Download PDF pdficon (1,384 KB) | Citation | Downloads: 1,536 | Views: 3,763

Author keywords
internet of things, telemedicine, electrocardiography, software architecture, distributed information systems

References keywords
internet(17), health(6), access(5), systems(4), services(4), industrial(4), applications(4)
Blue keywords are present in both the references section and the paper title.

About this article
Date of Publication: 2017-05-31
Volume 17, Issue 2, Year 2017, On page(s): 11 - 16
ISSN: 1582-7445, e-ISSN: 1844-7600
Digital Object Identifier: 10.4316/AECE.2017.02002
Web of Science Accession Number: 000405378100002
SCOPUS ID: 85020075883

Abstract
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Due to its very high potential, the Internet of Things (IoT) concept has been integrated in modern telemedicine systems. These systems enable real-time monitoring of patients at home, by using devices for acquiring various medical parameters or wearable devices that allow real-time monitoring of the medical signals. The data are transmitted to a medical specialist's office via the Internet and can be stored in cloud for further analysis. This article proposes an IoT architecture that can be used in healthcare for monitoring ECG signals independently acquired by the patient, using a mobile tele-electrocardiograph, without the help of a specialist. The main features of the mobile device are described, as well as how these features are integrated into the proposed IoT architecture. The article also tackles the security issues that may occur during the using of this system: integrity, confidentiality and authenticity.


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[1] Design, Fabrication, and Testing of an IoT Healthcare Cardiac Monitoring Device, Zagan, Ionel, Găitan, Vasile Gheorghiță, Petrariu, Adrian-Ioan, Iuga, Nicolai, Brezulianu, Adrian, Computers, ISSN 2073-431X, Issue 1, Volume 9, 2020.
Digital Object Identifier: 10.3390/computers9010015
[CrossRef]

[2] Implementing Blockchain to Enhance Usability of Patient-Generated Data, Baumann, Steffen, Stone, Richard, Abdelall, Esra, Srikrishnan, Varun, Schnieders, Thomas, Fales, Colten, Mumani, Ahmad, Proceedings of the Human Factors and Ergonomics Society Annual Meeting, ISSN 2169-5067, Issue 1, Volume 63, 2019.
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[3] A Novel Software Architecture Solution with a Focus on Long-Term IoT Device Security Support, Dodig, Ivica, Cafuta, Davor, Kramberger, Tin, Cesar, Ivan, Applied Sciences, ISSN 2076-3417, Issue 11, Volume 11, 2021.
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[4] Fog computing in health: A systematic literature review, de Moura Costa, Humberto Jorge, da Costa, Cristiano André, da Rosa Righi, Rodrigo, Antunes, Rodolfo Stoffel, Health and Technology, ISSN 2190-7188, Issue 5, Volume 10, 2020.
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[5] Design and Intensive Experimental Evaluation of an Enhanced Visible Light Communication System for Automotive Applications, Avătămăniței, Sebastian-Andrei, Căilean, Alin-Mihai, Done, Adrian, Dimian, Mihai, Popa, Valentin, Prelipceanu, Marius, Sensors, ISSN 1424-8220, Issue 11, Volume 20, 2020.
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[6] An ECG-based Authentication System Using Siamese Neural Networks, Ivanciu, Liliana, Ivanciu, Iustin-Alexandru, Farago, Paul, Roman, Marius, Hintea, Sorin, Journal of Medical and Biological Engineering, ISSN 1609-0985, Issue 4, Volume 41, 2021.
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[7] A Long-Distance Communication Architecture for Medical Devices Based on LoRaWAN Protocol, Gaitan, Nicoleta Cristina, Electronics, ISSN 2079-9292, Issue 8, Volume 10, 2021.
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[8] Internet of things in medicine: A systematic mapping study, Sadoughi, Farahnaz, Behmanesh, Ali, Sayfouri, Nasrin, Journal of Biomedical Informatics, ISSN 1532-0464, Issue , 2020.
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[9] Queue-Buffer Optimization Based on Aggressive Random Early Detection in Massive NB-IoT MANET for 5G Applications, Jafri, Syed Talib Abbas, Ahmed, Irfan, Ali, Sundus, Electronics, ISSN 2079-9292, Issue 18, Volume 11, 2022.
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[10] A Proposed Internet of Everything Framework for Medical Applications, Ghoniemy, Samy, Maghawry, Noura E., Journal of Advances in Information Technology, ISSN 1798-2340, Issue 1, Volume 10, 2019.
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[11] Medical data security of wearable tele-rehabilitation under internet of things, Wang, Ke, Xie, Shuxuan, Rodrigues, Joel, Internet of Things and Cyber-Physical Systems, ISSN 2667-3452, Issue , 2022.
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[12] A Software Architecture for the Industrial Internet of Things—A Conceptual Model, Ungurean, Ioan, Gaitan, Nicoleta Cristina, Sensors, ISSN 1424-8220, Issue 19, Volume 20, 2020.
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[13] IoT-based telemedicine for disease prevention and health promotion: State-of-the-Art, Albahri, A.S., Alwan, Jwan K., Taha, Zahraa K., Ismail, Sura F., Hamid, Rula A., Zaidan, A.A., Albahri, O.S., Zaidan, B.B., Alamoodi, A.H., Alsalem, M.A., Journal of Network and Computer Applications, ISSN 1084-8045, Issue , 2021.
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[14] A comprehensive review of energy harvesting and routing strategies for IoT sensors sustainability and communication technology, Aldin, Hesam Nejati Sharif, Ghods, Mostafa Razavi, Nayebipour, Farnoush, Torshiz, Masoud Niazi, Sensors International, ISSN 2666-3511, Issue , 2024.
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[15] Multi-Sensor Based healthcare monitoring system by LoWPAN-based architecture, Vanteru, Madhu Kumar, Jayabalaji, K.A., P, Suja G., Ilango, Poonguzhali, Nautiyal, Bhaskar, Yasmine Begum, A., Measurement: Sensors, ISSN 2665-9174, Issue , 2023.
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[16] Technological Features of Internet of Things in Medicine: A Systematic Mapping Study, Behmanesh, Ali, Sayfouri, Nasrin, Sadoughi, Farahnaz, Wireless Communications and Mobile Computing, ISSN 1530-8669, Issue , 2020.
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[17] Energy-balanced data collection with path-constrained mobile sink in wireless sensor networks, Fu, Xiuwen, He, Xiaolin, AEU - International Journal of Electronics and Communications, ISSN 1434-8411, Issue , 2020.
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[18] Red de sensores de humedad y temperatura de bajo costo, Mendoza-Pinto, Luis Manuel, Espinosa-Trujillo, María Jesús, Peet-Manzón, Jesús Humberto, Revista de Aplicaciones de la Ingeniería, ISSN 2410-3454, 2019.
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[19] Preeminent Development Boards to Design Sustainable Integrated Model of a Smart Healthcare System under IoT, Dalal, Priya, Aggarwal, Gaurav, Tejasvee, Sanjay, IOP Conference Series: Materials Science and Engineering, ISSN 1757-8981, Issue 1, Volume 1022, 2021.
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[20] Ubiquitous Healthcare System Based on the Sensors Network and Android Internet of Things Gateway, Geman, Oana, Chiuchisan, Iuliana, Ungurean, Ioan, Hagan, Marius, Arif, Muhammad, 2018 IEEE SmartWorld, Ubiquitous Intelligence & Computing, Advanced & Trusted Computing, Scalable Computing & Communications, Cloud & Big Data Computing, Internet of People and Smart City Innovation (SmartWorld/SCALCOM/UIC/ATC/CBDCom/IOP/SCI), ISBN 978-1-5386-9380-3, 2018.
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[21] Internet of M-Health Things System for Remote EKG Monitoring, Gaitan, Nicoleta Cristina, Ungurean, Ioan, 2019 International Conference on Sensing and Instrumentation in IoT Era (ISSI), ISBN 978-1-7281-1022-6, 2019.
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[22] IoT Based Development Boards for Smart Healthcare Applications, Bansal, Malti, Gandhi, Bani, 2018 4th International Conference on Computing Communication and Automation (ICCCA), ISBN 978-1-5386-6947-1, 2018.
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[23] Data Gathering Optimization in Wireless Sensor Networks Using Unmanned Aerial Vehicles, Vladuta, Valentin-Alexandru, Matei, Ioana, Bica, Ion, 2019 22nd International Conference on Control Systems and Computer Science (CSCS), ISBN 978-1-7281-2331-8, 2019.
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[24] An In-Depth Examination of Traditional, Blockchain, and AI-Based Key-Security for The Cyber-Physical IoT Networks, Kalele, Girish, 2023 3rd International Conference on Advance Computing and Innovative Technologies in Engineering (ICACITE), ISBN 979-8-3503-9926-4, 2023.
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[25] m-GreenCARDIO embedded system designed for out-of-hospital cardiac patients, Zagan, Ionel, Gaitan, Vasile Gheorghita, Iuga, Nicolai, Brezulianu, Adrian, 2018 International Conference on Development and Application Systems (DAS), ISBN 978-1-5386-1493-8, 2018.
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