Please use this identifier to cite or link to this item: https://dspace.mnau.edu.ua/jspui/handle/123456789/26784
Title: Research on Blocking Ion Channels in Cell Membranes Under the Action of Electromagnetic Field
Authors: Kundenko, Mykola
Мардзявко, Віталій Анатолійович
Mardziavko, Vitalii
Мардзявко, Катерина Олександрівна
Mardziavko, Katerina
Яблуновська, Катерина Олександрівна
Yablunovska, Katerina
Руденко, Андрій Юрійович
Rudenko, Andrii
Keywords: cell membrane
electromagnetic radiation
fruit storage
ion channels
ion flow
ion transport
microwave
Cytology
Electromagnetic fields
Electromagnetic wave emission
Fruits
Ion exchange
Ions
Stochastic control systems
Stochastic models
Stochastic systems
Blockings
Cellular respiration
Electrodiffusion
Electromagnetics
Fruit storage
Ion channel
Ion channels in cells
Ion flow
Ion-transport
Ultra-high-frequency
Cell membranes
Issue Date: 2026
Citation: Kundenko, M., Mardziavko, K., Mardziavko, V., & Rudenko, A. (2026). Research on blocking ion channels in cell membranes under the action of electromagnetic field. 6th international conference on electrical, computer and energy technologies (ICECET), 1–6. IEEE. https://doi.org/10.1109/icecet65726.2026.11632291
Abstract: The article investigates the effect of ultrahigh frequency electromagnetic radiation on the functioning of ion channels in fruit cell membranes, which determine the intensity of ion transport and the level of cellular respiration. Based on the electrodiffusion equation and the stochastic model of ion channel operation, a system of equations was constructed that describes the probabilities of the channel being in different functional states. Analytical expressions were obtained for the flow of ions through the membrane under the action of an external microwave field and it was established that electromagnetic influence at ultrahigh frequencies significantly increases the probability of channel blockage, reducing the permeability of the membrane. This leads to a noticeable decrease in the intensity of cellular respiration, which is a key factor in slowing down the physiological aging of fruits. The results confirm the prospects of using electromagnetic methods for controlled regulation of ion channel operation and extending the shelf life of fruits without the use of chemicals.
Description: Повний текст статті доступний з сайту видавця за посиланням: https://ieeexplore.ieee.org/document/11632291
URI: https://dspace.mnau.edu.ua/jspui/handle/123456789/26784
Appears in Collections:Публікації науково-педагогічних працівників МНАУ у БД Scopus
Публікації у БД Scopus (Інженерно-енергетичний факультет)

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