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Determination of the Geometric Parameters of Electrode Systems for Electrical Impedance Myography: A Preliminary Study

The electrical impedance myography method is widely used in solving bionic control problems and consists of assessing the change in the electrical impedance magnitude during muscle contraction in real time. However, the choice of electrode systems sizes is not always properly considered when using t...

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Autores principales: Briko, Andrey, Kapravchuk, Vladislava, Kobelev, Alexander, Tikhomirov, Alexey, Hammoud, Ahmad, Al-Harosh, Mugeb, Leonhardt, Steffen, Ngo, Chuong, Gulyaev, Yury, Shchukin, Sergey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8747741/
https://www.ncbi.nlm.nih.gov/pubmed/35009640
http://dx.doi.org/10.3390/s22010097
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author Briko, Andrey
Kapravchuk, Vladislava
Kobelev, Alexander
Tikhomirov, Alexey
Hammoud, Ahmad
Al-Harosh, Mugeb
Leonhardt, Steffen
Ngo, Chuong
Gulyaev, Yury
Shchukin, Sergey
author_facet Briko, Andrey
Kapravchuk, Vladislava
Kobelev, Alexander
Tikhomirov, Alexey
Hammoud, Ahmad
Al-Harosh, Mugeb
Leonhardt, Steffen
Ngo, Chuong
Gulyaev, Yury
Shchukin, Sergey
author_sort Briko, Andrey
collection PubMed
description The electrical impedance myography method is widely used in solving bionic control problems and consists of assessing the change in the electrical impedance magnitude during muscle contraction in real time. However, the choice of electrode systems sizes is not always properly considered when using the electrical impedance myography method in the existing approaches, which is important in terms of electrical impedance signal expressiveness and reproducibility. The article is devoted to the determination of acceptable sizes for the electrode systems for electrical impedance myography using the Pareto optimality assessment method and the electrical impedance signals formation model of the forearm area, taking into account the change in the electrophysical and geometric parameters of the skin and fat layer and muscle groups when performing actions with a hand. Numerical finite element simulation using anthropometric models of the forearm obtained by volunteers’ MRI 3D reconstructions was performed to determine a sufficient degree of the forearm anatomical features detailing in terms of the measured electrical impedance. For the mathematical description of electrical impedance relationships, a forearm two-layer model, represented by the skin-fat layer and muscles, was reasonably chosen, which adequately describes the change in electrical impedance when performing hand actions. Using this model, for the first time, an approach that can be used to determine the acceptable sizes of electrode systems for different parts of the body individually was proposed.
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spelling pubmed-87477412022-01-11 Determination of the Geometric Parameters of Electrode Systems for Electrical Impedance Myography: A Preliminary Study Briko, Andrey Kapravchuk, Vladislava Kobelev, Alexander Tikhomirov, Alexey Hammoud, Ahmad Al-Harosh, Mugeb Leonhardt, Steffen Ngo, Chuong Gulyaev, Yury Shchukin, Sergey Sensors (Basel) Article The electrical impedance myography method is widely used in solving bionic control problems and consists of assessing the change in the electrical impedance magnitude during muscle contraction in real time. However, the choice of electrode systems sizes is not always properly considered when using the electrical impedance myography method in the existing approaches, which is important in terms of electrical impedance signal expressiveness and reproducibility. The article is devoted to the determination of acceptable sizes for the electrode systems for electrical impedance myography using the Pareto optimality assessment method and the electrical impedance signals formation model of the forearm area, taking into account the change in the electrophysical and geometric parameters of the skin and fat layer and muscle groups when performing actions with a hand. Numerical finite element simulation using anthropometric models of the forearm obtained by volunteers’ MRI 3D reconstructions was performed to determine a sufficient degree of the forearm anatomical features detailing in terms of the measured electrical impedance. For the mathematical description of electrical impedance relationships, a forearm two-layer model, represented by the skin-fat layer and muscles, was reasonably chosen, which adequately describes the change in electrical impedance when performing hand actions. Using this model, for the first time, an approach that can be used to determine the acceptable sizes of electrode systems for different parts of the body individually was proposed. MDPI 2021-12-24 /pmc/articles/PMC8747741/ /pubmed/35009640 http://dx.doi.org/10.3390/s22010097 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Briko, Andrey
Kapravchuk, Vladislava
Kobelev, Alexander
Tikhomirov, Alexey
Hammoud, Ahmad
Al-Harosh, Mugeb
Leonhardt, Steffen
Ngo, Chuong
Gulyaev, Yury
Shchukin, Sergey
Determination of the Geometric Parameters of Electrode Systems for Electrical Impedance Myography: A Preliminary Study
title Determination of the Geometric Parameters of Electrode Systems for Electrical Impedance Myography: A Preliminary Study
title_full Determination of the Geometric Parameters of Electrode Systems for Electrical Impedance Myography: A Preliminary Study
title_fullStr Determination of the Geometric Parameters of Electrode Systems for Electrical Impedance Myography: A Preliminary Study
title_full_unstemmed Determination of the Geometric Parameters of Electrode Systems for Electrical Impedance Myography: A Preliminary Study
title_short Determination of the Geometric Parameters of Electrode Systems for Electrical Impedance Myography: A Preliminary Study
title_sort determination of the geometric parameters of electrode systems for electrical impedance myography: a preliminary study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8747741/
https://www.ncbi.nlm.nih.gov/pubmed/35009640
http://dx.doi.org/10.3390/s22010097
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