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Journal Biomedical Radioelectronics №5 for 2025 г.
Article in number:
Application of modern information technologies for improving the screening system of non-invasive electrocardiographic diagnostics
Type of article: scientific article
DOI: https://doi.org/10.18127/j15604136-202505-11
UDC: 616.12-073.97-71: 004.942
Authors:

A.Yu. Bodin1, O.N. Bodin2, M.N. Kramm3, R.F. Rakhmatullov4, F.K. Rakhmatullov5, N.A. Serzhantova6

1, 3 National Research University “MPEI” (Moscow, Russia)
2, 6 Penza State Technological University (Penza, Russia)
4, 5 Penza State University (Penza, Russia)
1 Bodin98@mail.ru, 2 bodin_o@inbox.ru, 3 KrammMN@mail.ru, 4 capitalofgreat@me.com, 5 fagimrakhmatullov@gmail.com, 6 itmmbspgta@yandex.r

Abstract:

Statement of the problem. Despite the rapid development of the market for non-invasive electrocardiological systems, methods and means of non-invasive electrocardiographic diagnostics based on multi-electrode recording of electrocardiographic signals are not used in screening examinations. As a result, developers are faced with the challenge of improving the noise immunity of non-invasive ECG diagnostic systems to ensure the accuracy of conclusions about the electrical activity of the heart, as well as using modern technologies to personalize the results. These challenges highlight the need for improvements in cardiographic systems.

Purpose of the work – improvement of screening non-invasive electrocardiographic diagnostics.

Results. Improving the quality of screening diagnostics of cardiovascular diseases is achieved by using the proposed system based on client-server architecture, multi-electrode registration of electrocardiograms, and a digital twin.

Pages: 50-57
For citation

Bodin A.Yu., Bodin O.N., Kramm M.N., Rakhmatullov R.F., Rakhmatullov F.K., Serzhantova N.A. Application of modern information technologies to improve the screening system of non-invasive electrocardiographic diagnostics. Biomedicine Radioengineering. 2025. V. 28. № 5. P. 50–57. DOI: https:// doi.org/10.18127/j15604136-202505-11 (In Russian)

References
  1. Oficial'nyj sajt kompanii analiziruyushchij tendencii sovremennogo razvitiya Mordor intelligence. Analiz razmera i doli rynka EKG – tendencii rosta i prognozy [Elektronnyj resurs]. URL: https://www.mordorintelligence.com/ru/industry-reports/global-electrocardiograph-ecg-market-industry (In Russian).
  2. Titomir L. I., Kneppo P. Matematicheskoe modelirovanie bioelektricheskogo generatora serdca. M.: Nauka, 1999. 448 s. (In Russian).
  3. Ivanov G.G., Sula A.S. Dispersionnoe EKG-kartirovanie. Teoreticheskie osnovy i klinicheskaya praktika. M.: Tekhnosfera. 2009. 196 s. (In Russian).
  4. Pasport nacional'nogo proekta «Zdravoohranenie», utv. protokolom zasedaniya prezidiuma Soveta pri Prezidente Rossijskoj Federacii po strategicheskomu razvitiyu i nacional'nym proektam ot 24 dekabrya 2018 g. № 16 (In Russian).
  5. Kardioanalizatory devyatikanal'nye komp'yuterizirovannye EK9C-01-“KARD” [Elektronnyj resurs]. Rezhim dostupa: https://all-pribors.ru/opisanie/26135-03-ek9ts-01-kard-24315 (In Russian).
  6. Kardioanalizatory Ankar-131[Elektronnyj resurs]. Rezhim dostupa: https://all-pribors.ru/opisanie/17127-98-ankar-131-10911 (In Russian).
  7. Elektrokardiografy komp'yuternye vos'mikanal'nye “Poli-Spektr-8” [Elektronnyj resurs]. Rezhim dostupa: https://all-pribors.ru/opisanie/27961-04-poli-spektr-8-poli-spektr-8-evns-ritm-vns-mikro-26788 (data obrashcheniya 21.07.2023 g.) (In Russian).
  8. Elektrokardioanalizatory komp'yuternye EK12K-01 “Al'ton” [Elektronnyj resurs]. Rezhim dostupa: https://all-pribors.ru/opisanie/24246-09-ek12k-01-alton-21642 (In Russian).
  9. Kardioanalizatory Ankar-131[Elektronnyj resurs]. Rezhim dostupa: https://all-pribors.ru/opisanie/17127-98-ankar-131-10911 (In Russian).
  10. Istomina T.V., Petrunina E.V., Istomin V.V., Trub N.V. IOT intelligent system for medical control of the state of operators during their professional activity in extreme situations. AIP Conference Proceedings. 2021. V. 1. P. 2389 (In Russian).
  11. Markuleva M.V., Polosin V.G., Pushkareva A.V. The non-invasive cardiodiagnosis on a basis of computer processing in phase space of electrography signals. 2019 International Multi-Conference on Engineering, Computer and Information Sciences (SIBIRCON). Novosibirsk. Russia. P. 65–68. October 2019. DOI: 10.1109/SIBIRCON48586.2019.8958445 (In Russian).
  12. Patent na izobretenie RU 2764498 C2. Sposob i ustrojstvo registracii mnozhestvennyh otvedenij elektrokardiosignala. O.N. Bodin, M.N. Kramm, A.Yu. Bodin, R.F. Rahmatullov, F.K. Rahmatullov, M.I. Safronov, A.I. Fedorenko, A.I. Chernikov. 2020 (In Russian).
  13. Kramm M.N. Razrabotka metodologii informacionnoj skriningovoj sistemy elektrokardiodiagnostiki: Dis. … dokt. tekhn. nauk. 2021. Penza, PGU. 309 s. (In Russian).
  14. Prohorov A., Lysachev M. Cifrovoj dvojnik. Analiz, trendy, mirovoj opyt. Pod red. prof. A. Borovkova. M.: OOO «Al'yansPrint». 2020. 401 s. (In Russian).
  15. Patent № 2651068 (RF). Sposob neinvazivnogo opredeleniya elektrofiziologicheskih harakteristik serdca. O.N. Bodin, A.Yu. Bodin, G.V. Zhihareva, M.N. Kramm, Yu.A. Palyutina, N.I. Strelkov, A.I. Chernikov. 2018 (In Russian).
Date of receipt: 18.07.2025
Approved after review: 29.07.2025
Accepted for publication: 22.09.2025