The paper presents the results of the development of a promising system for remote monitoring for wearable diagnostics of key human vital signs, which compares favorably with conventional solutions in that in addition to the traditional electrocardiogram and heart rate measurement, it also allows measuring body temperature, blood oxygen saturation, mobility and orientation in space, recording the fact of falling, breathing rate, etc. This opens the possibility to carry out a comprehensive assessment of the state of health of patients with complex diseases. It is shown that the system can be effectively used both for screening purposes and for long-term monitoring. The advantages of the system over standard Holter monitoring systems are presented.
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22 June 2022
PROCEEDINGS OF THE II INTERNATIONAL CONFERENCE ON ADVANCES IN MATERIALS, SYSTEMS AND TECHNOLOGIES: (CAMSTech-II 2021)
29–31 July 2021
Krasnoyarsk, Russian Federation
Research Article|
June 22 2022
Innovation based remote monitoring for wearable diagnostics in real time mode
Alexandr Zhukov;
Alexandr Zhukov
a)
1
Institute of Astronomy of the Russian Academy of Sciences
, Moscow, Russia
2
FGBSI «The Federal Center of Analyzis»
, Moscow, Russia
3
Russian Technological University
, Moscow, Russia
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Alexandr Zaverzaev;
Alexandr Zaverzaev
b)
4
JSC "Special Design Bureau of the Moscow Energy Institute"
, Moscow, Russia
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Gennady Sozinov;
Gennady Sozinov
c)
2
FGBSI «The Federal Center of Analyzis»
, Moscow, Russia
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Igor Kartsan
Igor Kartsan
d)
5
Marine Hydrophysical Institute, Russian Academy of Sciences
, Sevastopol, Russia
6
Sevastopol State University
, Sevastopol, Russia
7
Reshetnev Siberian State University of Science and Technology
, Krasnoyarsk, Russia
8
V.I. Vernadsky Crimean Federal University
, Simferopol, Russia
d)Corresponding author: [email protected]
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d)Corresponding author: [email protected]
AIP Conf. Proc. 2467, 020025 (2022)
Citation
Alexandr Zhukov, Alexandr Zaverzaev, Gennady Sozinov, Igor Kartsan; Innovation based remote monitoring for wearable diagnostics in real time mode. AIP Conf. Proc. 22 June 2022; 2467 (1): 020025. https://doi.org/10.1063/5.0092533
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