Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 23
Page No. 10028 - 10036

Principles and Methods of Biological Objects Internal Structures Identification in Multifrequency Electrical ImpedanceTomography Based on Natural-Model Approach

Authors : G.K. Aleksanyan, P.A. Denisov, N.I. Gorbatenko, I.D. Shcherbakov and I.S.D. Al Balushi

References

Aleksanyan, G.K., A.I. Kucher, A.D. Tarasov, N.M. Cuong and C.N. Phong, 2015. Design of software and experimental setup for reconstruction and visualization of internal structures of conductive bodies. Intl. J. Soft Comput., 10: 462-467.
CrossRef  |  Direct Link  |  

Aleksanyan, G.K., N.I. Gorbatenko and A.D. Tarasov, 2014. Modern trends in development of electrical impedance tomography in medicine. Biosci. Biotechnol. Res. Asia, 11: 85-91.
Direct Link  |  

Aleksanyan, G.K., N.I. Gorbatenko and A.I. Kucher, 2015. Development and production of multi-layered electrode system for electrical impedance tomography devices. Int. J. Appl. Eng. Res., 19: 40580-40584.

Aleksanyan, G.K., N.I. Gorbatenko, A.I. Kucher, K.M. Shirokov and C.N. Phong, 2015. Developing principles and functioning algorithms of the hardware-software complex for electrical impedance tomography of biological objects. Biosci. Biotechnol. Res. Asia, 12: 709-718.

Aleksanyan, G.K., N.I. Gorbatenko, V.V. Grechikhin, T.N. Phong and T.D. Lam, 2016. Application of natural and model experiment methodology in two-dimensional electrical impedance tomography. ARPN. J. Eng. Appl. Sci., 11: 5871-5875.

Brazovskii, K.S., 2015. Methods and Tools to Evaluate the Functional State of the Human Brain based on the Electrical Measurements (Translated by Dr. Tehn). Tomsk Publication House, Tomsk, Russia, Pages: 369.

Gorbatenko, N.I., 2001. [Prototype Model Tests for Products Made of Ferromagnetic Materials]. Publishing House of the North Caucasian Scientific Centre of the Higher Education Institutions, Russia, Pages: 392 (In Russian).

Holder, D.S., 2005. Electrical Impedance Tomography: Methods, History and Applications. Taylor & Francis, Milton Park, Didcot, ISBN:9780750309523, Pages: 456.

Lankin, A.M., M.V. Lankin, G.K. Aleksanyan and N.D. Narakidze, 2015. Development of principles of computer appliance functioning, determination of characteristics of the biological object. Intl. J. Appl. Eng. Res., 10: 6489-6498.

Nikolaev, D.V., A.V. Smirnov, I.G. Bobrinskaya and S.G. Rudnev, 2009. Bioimpedance Analysis of the Composition of the Human Body. Nauka Publisher, Moscow, Russia, Pages: 392.

Zuev, A.L., V.Y. Mishlanov, A.I. Sudakov, N.V. Shakirov and A.V. Frolov, 2012. The equivalent electrical models of biological objects. Russ. J. Biomech., 16: 110-120.

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved