Title :
Estimation of bioimpedance distribution in the local tissue using divided electrodes
Author :
Komai, Y. ; Yasuno, E. ; Kinouchi, Y. ; Izukura, K. ; Iritani, T. ; Morimoto, T. ; Takeuchi, M.
Author_Institution :
Dept. of Electr. & Electron. Eng., Tokushima Univ., Japan
Abstract :
Electrical impedance tomography (EIT) is 2-D or 3-D image of electrical impedance distribution in a living tissue. It has become expected as a different method to obtain a tissue characteristic for various medical diagnoses. To realize a practical EIT measurement system, it is an important subject to choose a proper configuration of the electrodes, because the EIT is estimated from impedance data, which is non-invasively measured by electrodes. In this study, a new configuration of the electrodes, called divided electrode, is proposed for a short time measurement of bio-impedance in a cross section of a local tissue. Its capability is examined by computer simulations, where a distributed equivalent circuit is used as a model in the cross section of the tissue. Estimation of impedance parameters is carried out by use of the Newton Method. As results of them, usefulness of the proposed method is confirmed by computer simulations using a typical layered tissue model.
Keywords :
Newton method; biological tissues; biomedical electrodes; electric impedance imaging; electric impedance measurement; equivalent circuits; medical diagnostic computing; parameter estimation; patient diagnosis; 2D image; 3D image; Newton method; bioimpedance distribution estimation; bioimpedance measurement; computer simulations; distributed equivalent circuit; divided electrode; electrical impedance distribution; electrical impedance tomography; electrical impedance tomography measurement system; electrodes configuration; impedance data; impedance parameter estimation; local tissue; medical diagnoses; three dimensional image; tissue characteristics; tissue cross section; two dimensional image; typical layered tissue model; Bioimpedance; Biomedical electrodes; Computer simulation; Equivalent circuits; Impedance measurement; Medical diagnosis; Newton method; Parameter estimation; Time measurement; Tomography;
Conference_Titel :
Control, Automation, Robotics and Vision, 2002. ICARCV 2002. 7th International Conference on
Print_ISBN :
981-04-8364-3
DOI :
10.1109/ICARCV.2002.1234941