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dc.contributor.authorВахоніна, Лариса Володимирівна-
dc.contributor.authorVakhonina, Larisa-
dc.contributor.authorМардзявко, Віталій Анатолійович-
dc.contributor.authorMardziavko, Vitalii-
dc.contributor.authorРуденко, Андрій Юрійович-
dc.contributor.authorRudenko, Andrii-
dc.contributor.authorKundenko, Mykolaya-
dc.contributor.authorChaly, Igor-
dc.contributor.authorMegel, Yurya-
dc.date.accessioned2023-02-03T08:39:56Z-
dc.date.available2023-02-03T08:39:56Z-
dc.date.issued2022-
dc.identifier.citationKundenko, M., Chaly, I., Vakhonina, L., Megel, Y., Rudenko, A., & Mardziavko, V. (2022). Development of a model of cell functioning to measure the interaction of low-energy EMF. Paper presented at the 32nd International Scientific Symposium Metrology and Metrology Assurance, MMA 2022, doi:10.1109/MMA55579.2022.9993093uk_UA
dc.identifier.urihttps://dspace.mnau.edu.ua/jspui/handle/123456789/12502-
dc.descriptionПовний текст статті достцпний з сайту видавця за посиланням https://ieeexplore.ieee.org/document/9993093uk_UA
dc.description.abstractIn this work, we carry out a study of the functioning of a cell, based on models, taking into account the encounter at its low-energy electromagnetic field, using the acceleration of the development of stimulating technologies to increase the productivity of agricultural production. And the following is considering the simplest circuit, which is a generator that creates a current pulse that flows through the fractal load and forms a voltage drop across it. As a result, current oscillations in a circuit with a fractal membrane as a load and an external harmonic driving force, which simulates an external electromagnetic field, were considered. The equation of the current through a fractal membrane was derived, taking into account elementary phenomenological considerations, which make it possible to obtain a generalization of Ohm for biological membranes, taking into account their frontality. A model has also been derived to describe the fractal properties of the cell membrane during active transport through it, that is, the effect of a low-energy electromagnetic field. Thus, the effect of an external electromagnetic field on the interaction of neurons was theoretically investigated and the possibility of the appearance of chaotic impulse channels of short duration τT was established.uk_UA
dc.language.isootheruk_UA
dc.publisherMykolayiv National Agrarian Universityuk_UA
dc.publisherState Biotechnological University-
dc.subjectbiological membranesuk_UA
dc.subjectcell functioninguk_UA
dc.subjectdissipationuk_UA
dc.subjectextremely high frequenciesuk_UA
dc.subjectfractal propertiesuk_UA
dc.subjectlow-energy electromagnetic fielduk_UA
dc.subjectmemory in a systemuk_UA
dc.subjectnonlinear oscillatory systemuk_UA
dc.subjectengineering controlled termsuk_UA
dc.subjectagricultureuk_UA
dc.subjectcellsuk_UA
dc.subjectcytologyuk_UA
dc.subjectelectric loadsuk_UA
dc.subjectfractalsuk_UA
dc.subjectmembranesuk_UA
dc.subjectcell functioninguk_UA
dc.subjectcell-baseduk_UA
dc.subjectdissipationuk_UA
dc.subjectexternal electromagnetic fielduk_UA
dc.subjectextremely high frequenciesuk_UA
dc.subjectfractal propertiesuk_UA
dc.subjectlow-energy electromagnetic fielduk_UA
dc.subjectlower energiesuk_UA
dc.subjectmemory in a systemuk_UA
dc.subjectnonlinear oscillatory systemsuk_UA
dc.subjectengineering main headinguk_UA
dc.subjectelectromagnetic fieldsuk_UA
dc.titleDevelopment of a Model of Cell Functioning to Measure the Interaction of Low-Energy EMFuk_UA
dc.typeArticleuk_UA
Розташовується у зібраннях:Публікації науково-педагогічних працівників МНАУ у БД Scopus
Публікації науково-педагогічних працівників МНАУ у БД Web of Science
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