Title :
A New Method for Electric Impedance Imaging Using an Eddy Current With a Tetrapolar Circuit
Author :
Ahsan-Ul-Ambia ; Toda, Shogo ; Takemae, Tadashi ; Kosugi, Yukio ; Hongo, Minoru
Author_Institution :
Grad. Sch. of Sci. & Technol., Shizuoka Univ., Shizuoka
Abstract :
A new contactless technique for electrical impedance imaging, using an eddy current managed along with the tetrapolar circuit method, is proposed. The eddy current produced by a magnetic field is superimposed on a constant current that is normally used in the tetrapolar circuit method, and thus is used to control the current distribution in the body. By changing the current distribution, a set of voltage differences is measured with a pair of electrodes. This set of voltage differences is used in the image reconstruction of the resistivity distribution. The least square error minimization method is used in the reconstruction algorithm. The principle of this method is explained theoretically. A backprojection algorithm was used to get 2-D images. Based on this principle, a measurement system was developed and model experiments were conducted with a saline-filled phantom. The estimated shape of each model in the reconstructed image was similar to that of the corresponding model. From the results of these experiments, it is confirmed that the proposed method is applicable to the realization of electrical conductivity imaging.
Keywords :
backpropagation; eddy currents; electric impedance imaging; image reconstruction; least squares approximations; medical image processing; phantoms; backprojection algorithm; current distribution; eddy current; electric impedance imaging; image reconstruction; least square error minimization; saline-filled phantom; tetrapolar circuit; Conductivity; Contacts; Current distribution; Current measurement; Eddy currents; Image reconstruction; Impedance; Magnetic circuits; Magnetic field measurement; Voltage; Biomedical impedance imaging; electrical impedance tomography (EIT); magnetic induction tomography (MIT); Algorithms; Electric Impedance; Electromagnetic Fields; Equipment Design; Models, Biological; Phantoms, Imaging; Sodium Chloride; Tomography;
Journal_Title :
Biomedical Engineering, IEEE Transactions on
DOI :
10.1109/TBME.2008.2008169