Electrical impedance imaging - injected current

2006-01-01
WILEY - Encyclopedia of Biomedical Engineering

Suggestions

Electrical impedance tomography using induced currents.
Gençer, Nevzat Güneri; İder, Yusuf Ziya; Department of Electrical and Electronics Engineering (1993)
ELECTRICAL-IMPEDANCE TOMOGRAPHY USING INDUCED CURRENTS - AN EXPERIMENTAL-STUDY
Gençer, Nevzat Güneri (1993-11-06)
The theory behind induced current EIT is summarized. A prototype data acquisition system is described which is realized to verify the theoretical studies. Data collected from a two-dimensional (2D) object distribution is compared with the calculated data obtained by the finite element method. It is shown that the data acquisition system is capable of collecting real data which closely follows the theoretically expected perturbation in boundary potential differences. Images reconstructed by real data sets ar...
Electrical resistivities of liquid Li-Sn and Na-Pb alloys
Khajil, T. M. A.; Tomak, Mehmet (American Physical Society (APS), 1988-06-01)
The resistivity of liquid Li-Sn and Na-Pb alloys is calculated using the theory of ‘‘2 k F ’’ scattering theory recently developed by Morgan et al. The partial structure factors are described by the mean-spherical approximation for a system of hard spheres with Yukawa tails. The calculated resistivity values are in very good agreement with experiment. The improvement over the widely used Faber-Ziman formalism is impressive.
Electrical properties of silicide/silicon diodes
Akman, Nurten; Turan, Raşit; Department of Physics (1994)
ELECTRICAL RESISTIVITIES OF LIQUID AL-MG AND AL-CU ALLOYS
KHAJIL, TMA; Tomak, Mehmet (1989-05-01)
The electrical resistivity of liquid Al−Mg and Al−Cu alloys is calculated using both the Faber-Ziman and «2k F» scattering theories. The partial structure factors are described by the hard-sphere system. The calculated resistivity values are in qualitative agreement with available experimental data.
Citation Formats
B. M. Eyüboğlu, “Electrical impedance imaging - injected current,” WILEY - Encyclopedia of Biomedical Engineering, pp. 1195–1205, 2006, Accessed: 00, 2021. [Online]. Available: https://hdl.handle.net/11511/77823.