S.G. Gurzhin1
1 FSBEI HE «Ryazan State Radio Engineering University named after V.F. Utkin» (Ryazan, Russia)
1 gurzhin@mail.ru
The clinical efficacy of chronomagnetotherapy technology based on the Multimag system has long been officially recognized by the Russian Ministry of Health and confirmed by numerous positive reviews from medical institutions in Russia and abroad using this technology. At the same time, the practical results obtained by various magnetotherapy practitioners over many years and the scientific research conducted in this field define new challenges for improving chronomagnetotherapy and further enhancing its effectiveness. These challenges are primarily aimed at automatically aligning the dynamics of the therapeutic effect with the patient's fundamental biorhythms, adapting the magnetotherapeutic effect to the physiological characteristics and conditions of each individual patient, as well as providing a prompt, objective, quantitative assessment of their current functional state and a virtual expert evaluation of the magnetotherapy session performed using the system's hardware and software based on generally accepted criteria and diagnostic indicators. In terms of improving the effectiveness of chronomagnetotherapy, it is especially important to develop and implement methods and technical means for metrological assessment of the sensors used to record physiological processes and errors in measuring their informative parameters.
To demonstrate the possibilities of implementation and prospects for the development of methods and technical means for further increasing the effectiveness of medical technology of complex chronomagnetotherapy of general impact.
Methods and technical means have been developed that allow for the dosed setting, within wide limits and with high accuracy, of a certain set of biotropic parameters, on the basis of which a complex-modulated magnetotherapeutic effect can be formed and structured in time and space in the coordinates intensity-time-polarity-space-frequency-direction (ITPSFD). New solutions have been proposed that allow for controlling the level of localization, heterogeneity and fragmentation of the effect according to a given law, as well as for creating vortex magnetic fields with different rotation speeds moving along given trajectories relative to the patient. Methods and technical means have been developed that allow for promptly assessing the current functional state of the patient during a magnetotherapy session, identifying his vital biorhythms and synchronizing the therapeutic effect with them.
The implementation and integration of the developed methods and technical means into the Multimag and Relaxmag complex chronomagnetotherapy systems will significantly increase the effectiveness of magnetic field treatment.
Gurzhin S.G. Increasing the effectiveness of complex chronomagnetotherapy by synchronizing the dynamics of the therapeutic effect with the patient's biorhythms and using biotechnical feedback // Biomedicine Radioengineering. 2026. V. 29. № 5. Р. 101-110. DOI: https://doi.org/10.18127/j15604136-202605-15
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