Two-part electrodes of the physical phantom for EIT
DOI:
https://doi.org/10.20535/RADAP.2017.70.49-55Keywords:
electrodes, electrical impedance tomography, probe signal, maintainabilityAbstract
In this article explored methods for increasing of the accuracy of measurement in the hardware part of the electrical impedance tomograph, in particular, in its electrode system, which contains two-parts (combined) electrodes and are installed directly in a physical phantom. The principles of construction of the measuring part of the EITomograph using simple and combined electric drives are considered.Justified the choice of material for the producing of electrodes. Presented the construction of combined electrodes and the parameters of different materials for their producing.
In the article describe the influence of non-identity for physical sizes of combined electrodes. Shown possible variants for the compensation of inaccuracy in the producing of electrodes and the inaccuracy of their installation. Increased ease of use and maintainability signal transmission lines by using these electrodes.
Compared to simple electrodes, combined have several advantages: maintainability; rapid replacement of the electrode in a physical phantom (even in the presence of an electrolyte); manufacturability of producing; higher mechanical resistance and reliability; absolute decoupling of the measuring circle and power circle in the hardware part of the EITomograph; significantly lower amount of occurrence of artifacts during the image reconstruction.
That's why application of combined electrodes leads not only to facilitate the physical construction and setting of the EITomograph. It also increases the quality of the solution of the inverse problem.
References
Перелік посилань
Stoneman M. Correction of electrode polarization contributions to the dielectric properties of normal and cancerous breast tissues at audio/radiofrequencies / M. Stoneman, M. Kosempa, W. Gregory, C. Gregory, J. Marx, W. Mikkelson, J. Tjoe, and V. Raicu // Phys. Med. Boil. - 2007. - Vol.52, N.22. - P.6589–6604.
Griffiths H. A phantom for electrical impedance tomography / H. Griffiths // Clin. Phys. Physiol. Meas. - 1988. - Vol. 9. - A. 15—20.
Рибін О.І. Чутливість в імпедансній томографії / О.І. Рибін, Є.В. Гайдаєнко, І.О. Сушко, О.І. Гаманенко // Вісник НТУУ «КПІ». Серія Радіотехніка. Радіоапаратобудування. - 2013. - № 55. - С.106—114.
Электроимпедансная томография / Я.С. Пеккер, К.С. Бразовский, В.Ю. Усов, М.П. Плотников, О.С. Уманский.— Томск: ООО «Издательство научно-технической литературы»,2004.—190с.
Birgerson U. Electrical Impedance of Human Skin and Tissue Alterations: Mathematical Modeling and Measurements / U. Birgerson. - Sweden, Stockholm: Karolinska Institutet, 2012. - 59 р.
Федотов А. А. Измерительные преобразователи биомедицинских сигналов систем клинического мониторинга~/ А. А. Федотов, С. А. Акулов. - М. : Радио и связь, 2013. - 250 с.
Гаманенко О.I. Мультичастотнi генератори струму в системi ЕIТ / О.I. Гаманенко, О.В. Гусєва~// Радiотехнiчнi поля, сигнали, апарати та системи. - 2017. - с.Ё198-200.
Готовский М.Ю. Электрохимические процессы на электродах при электропунктурной диагностике. Сообщение 1. Постоянный ток / М.Ю. Готовский, Ю.Ф. Перов~// Традиционная медицина. - 2013. - №.4 - с.~4–9.
Кухлинг Х. Справочник по физике. Пер. с нем., М. : Мир, 1982.
References
Stoneman M., Kosempa M., Gregory W., Gregory C., Marx J., Mikkelson W., Tjoe J. and Raicu V. (2007) Correction of electrode polarization contributions to the dielectric properties of normal and cancerous breast tissues at audio/radiofrequencies, Biol. Med. Phys., Vol. 52, pp. 6589–6604. DOI: 10.1088/0031-9155/52/22/003
Griffiths H (1988) A phantom for electrical impedance tomography, Clinical Physics and Physiological Measurement, Vol. 9, Suppl. A, pp. 15-20. DOI: 10.1088/0143-0815/9/4a/003
Rybin A. I., Gaydayenko E. V., Sushko I. O. and Gamanenko A. I. (2013) The sensitivity in Electrical Impedance Tomography. Visn. NTUU KPI, Ser. Radioteh. radioaparatobuduv., No. 55, pp. 107-117. (in Ukrainian)
Pekker Ya. S., Brazovskiy K.S., Usov V.Yu., Plotnikov M.P. and Umanskiy O.S. (2004) Elektroimpedansnaya tomografiya, Tomsk, INTL, 190 p.
Birgerson U. (2012) Electrical Impedance of Human Skin and Tissue Alterations: Mathematical Modeling and Measurements, Stockholm: Karolinska Institutet, 59 р.
Fedotov A. A. and Akulov S. A. (2013) Izmeritel'nye preobrazovateli biomedicinskih signalov sistem klinicheskogo monitoringa[Measuring transducers of biometric signals of clinical monitoring systems]. Moscow, Radio i svjaz', 250 p.
Hamanenko O.I. and Husieva O.V. (2017) Multychastotni heneratory strumu v systemi EIT [Multifrequency current generators in the EIT system]. Radiotekhnichni polia, syhnaly, aparaty ta systemy, pp. 198-200.
Gotovskii M.Yu. and Perov Yu.F. (2013) Elektrokhimicheskie protsessy na elektrodakh pri elektropunkturnoi diagnostike. Soobshchenie 1. Postoyannyi tok [Electrochemical processes on electrodes during electropuncture diagnostics. Message 1. Direct current], Traditsionnaya meditsina, No. 4, pp. 4-9.
Kukhling Kh. (1982) Spravochnik po fizike [Handbook of Physics], M. : Mir.
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