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Development of elements of software-controlled magnetic cell for magnetotherapeutic devices

Keywords:

S.G. Gurzhin - Ph.D. (Eng.), Associate Professor, Department of Information-Measuring and Biomedical Engineering, Ryazan State Radio Engineering University, the Winner of the Lenin Komsomol Prize in Science and Technology, Laureate of the Ryazan Region on Science and Technology and the Silver Medal Academician V.F. Utkin, Honorary Worker of Higher Professional Education of the Russian Federation
E-mail: gurzhin@mail.ru
V.I. Zhulev - Dr.Sc. (Eng.), Professor, Head of Department of Information-Measuring and Biomedical Engineering, Ryazan State Radio Engineering University, Laureate of the Ryazan Region on Science and Technology and the Silver Medal Academician V.F. Utkin, Honored Worker of Higher School of Russian Federation
E-mail: zhulev.v.i@rsreu.ru
M.B. Kaplan - Ph.D. (Eng.), Associate Professor, Department of Information-Measuring and Biomedical Engineering, Ryazan State Radio Engineering University
E-mail: mik_kap2001@mail.ru
E.M. Proshin - Dr.Sc. (Eng.), Professor, Department of Information-Measuring and Biomedical Engineering, Ryazan State Radio Engineering University, Laureate of the Ryazan Region on Science and Technology Academician V.F. Utkin, Honorary Worker of Higher Professional Education of the Russian Federation
E-mail: proshin39@mail.ru
A.V. Shuljakov - Senior Lecturer, Department of Information-Measuring and Biomedical Engineering, Ryazan State Radio Engineering University
E-mail: shul_andr@mail.ru


As part of the creation of new magnetotherapeutic devices, devices designed on the basis of software-controlled magnetic cells are being developed. The determining possibility of such cells is the formation of a magnetic field that varies in space and time. The microcontroller functions as a control unit and acts as an intelligent module. The software configuration of the magnetotherapeutic system combines a set of programs, such as a program for a microcontroller, an interface program for a computer, a software generator of techniques. Each of these programs is focused on the implementation of special functions, and was implemented based on the requirements of accuracy, reliability, speed, presented to the final magnetotherapeutic system. The structure of the software, in particular, the formation of files of treatment methods, is designed taking into account the possibility of introducing contours of bio-adaptive correction of therapeutic effects.

References:
  1. Sistemy' kompleksnoj e'lektromagnitoterapii: Ucheb. posobie dlya vuzov / Pod red. A.M. Berkutova, V.I. Zhuleva, G.A. Kuraeva, E.M. Proshina. M.: Laboratoriya Bazovy'x Znanij. 2000. 376 s.
  2. Kompleksnaya xronomagnitoterapiya: metody' i sredstva bioadaptaczii vozdejsvtiya. Monografiya / Pod red. S.G. Gurzhina i E.M. Proshina. M.: Radiotexnika. 2015. 212 s.
June 24, 2020
May 29, 2020

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