Justification of the electrical scheme of biological tissue replacementunder the action of DC voltage

The change in the impedance of biological tissue under the influence of voltage is used in the diagnosis and treatment of various diseases. Mathematical models describing physical and biological processes in biological objects are based on electrical substitution schemes. The subject of research of...

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Main Authors: V. Kryvonosov, N. Prudnikova, L. Martyniuk
Format: Article
Language:English
Published: National University of Life and Environmental Sciences of Ukraine 2022-11-01
Series:Machinery & Energetics
Subjects:
Online Access:https://technicalscience.com.ua/journals/t-13-4-2022/obgruntuvannya-yelyektrichnoyi-skhyemi-zamishchyennya-biologichnoyi-tkanini-pri-diyi-naprugi-postiynogo-strumu
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author V. Kryvonosov
N. Prudnikova
L. Martyniuk
author_facet V. Kryvonosov
N. Prudnikova
L. Martyniuk
author_sort V. Kryvonosov
collection DOAJ
description The change in the impedance of biological tissue under the influence of voltage is used in the diagnosis and treatment of various diseases. Mathematical models describing physical and biological processes in biological objects are based on electrical substitution schemes. The subject of research of this work was the study of the change in the impedance of biological tissue in the transient process of ionization under the action of DC voltage. An analysis of the known substitution schemes was carried out, the shortcomings of their application were identified when the transient processes of ionization in the tissue under the action of direct current voltage were studied, and the substitution scheme with the introduction of additional resistance was substantiated, both analytically and experimentally. In the work, the bioimpedance method is applied when direct current voltage is applied to biological tissue, taking into account the law of commutation in transient ionization processes. An invasive measurement of the change in impedance with needle electrodes was carried out, and it was proved that the active component proportionally depends on the distance between the electrodes, while the capacitive component remains unchanged. It is shown that the ionization time constant is a criterion parameter and can be used in the diagnosis of the development of ischemic disease of muscle tissue, the change in the state of biological tissue when blood flow is stopped during the application of a tourniquet. It has been proven that the ionization time constant does not change with an unchanged ionic composition of the tissue and can be used in the analysis of the composition of the intercellular space. A simultaneous invasive measurement was performed in two identical places of different limbs, on one of which a hemostatic tourniquet was applied. The obtained results made it possible to conclude that a change in the constant time from 15% to 50% compared to two constant times allows for rapid diagnosis, within 2 minutes, of the state of biological tissue and can be used in the study of the development of diseases associated with ischemia. The results of the study can be used for rapid diagnosis of the state of a biological object and the creation of an inexpensive device for its use in surgery and research laboratories
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spelling doaj.art-e6669d5418804b9a80f0286c2fa529792024-03-15T14:27:34ZengNational University of Life and Environmental Sciences of UkraineMachinery & Energetics2663-13342663-13422022-11-011346071https://doi.org/10.31548/machenergy.13(4).2022.60-71460Justification of the electrical scheme of biological tissue replacementunder the action of DC voltageV. KryvonosovN. PrudnikovaL. MartyniukThe change in the impedance of biological tissue under the influence of voltage is used in the diagnosis and treatment of various diseases. Mathematical models describing physical and biological processes in biological objects are based on electrical substitution schemes. The subject of research of this work was the study of the change in the impedance of biological tissue in the transient process of ionization under the action of DC voltage. An analysis of the known substitution schemes was carried out, the shortcomings of their application were identified when the transient processes of ionization in the tissue under the action of direct current voltage were studied, and the substitution scheme with the introduction of additional resistance was substantiated, both analytically and experimentally. In the work, the bioimpedance method is applied when direct current voltage is applied to biological tissue, taking into account the law of commutation in transient ionization processes. An invasive measurement of the change in impedance with needle electrodes was carried out, and it was proved that the active component proportionally depends on the distance between the electrodes, while the capacitive component remains unchanged. It is shown that the ionization time constant is a criterion parameter and can be used in the diagnosis of the development of ischemic disease of muscle tissue, the change in the state of biological tissue when blood flow is stopped during the application of a tourniquet. It has been proven that the ionization time constant does not change with an unchanged ionic composition of the tissue and can be used in the analysis of the composition of the intercellular space. A simultaneous invasive measurement was performed in two identical places of different limbs, on one of which a hemostatic tourniquet was applied. The obtained results made it possible to conclude that a change in the constant time from 15% to 50% compared to two constant times allows for rapid diagnosis, within 2 minutes, of the state of biological tissue and can be used in the study of the development of diseases associated with ischemia. The results of the study can be used for rapid diagnosis of the state of a biological object and the creation of an inexpensive device for its use in surgery and research laboratorieshttps://technicalscience.com.ua/journals/t-13-4-2022/obgruntuvannya-yelyektrichnoyi-skhyemi-zamishchyennya-biologichnoyi-tkanini-pri-diyi-naprugi-postiynogo-strumuimpedancetransient processionization processcell resistancecapacitanceionization time constantdiagnosticsischemia
spellingShingle V. Kryvonosov
N. Prudnikova
L. Martyniuk
Justification of the electrical scheme of biological tissue replacementunder the action of DC voltage
Machinery & Energetics
impedance
transient process
ionization process
cell resistance
capacitance
ionization time constant
diagnostics
ischemia
title Justification of the electrical scheme of biological tissue replacementunder the action of DC voltage
title_full Justification of the electrical scheme of biological tissue replacementunder the action of DC voltage
title_fullStr Justification of the electrical scheme of biological tissue replacementunder the action of DC voltage
title_full_unstemmed Justification of the electrical scheme of biological tissue replacementunder the action of DC voltage
title_short Justification of the electrical scheme of biological tissue replacementunder the action of DC voltage
title_sort justification of the electrical scheme of biological tissue replacementunder the action of dc voltage
topic impedance
transient process
ionization process
cell resistance
capacitance
ionization time constant
diagnostics
ischemia
url https://technicalscience.com.ua/journals/t-13-4-2022/obgruntuvannya-yelyektrichnoyi-skhyemi-zamishchyennya-biologichnoyi-tkanini-pri-diyi-naprugi-postiynogo-strumu
work_keys_str_mv AT vkryvonosov justificationoftheelectricalschemeofbiologicaltissuereplacementundertheactionofdcvoltage
AT nprudnikova justificationoftheelectricalschemeofbiologicaltissuereplacementundertheactionofdcvoltage
AT lmartyniuk justificationoftheelectricalschemeofbiologicaltissuereplacementundertheactionofdcvoltage