BIOELECTRIC PHENOMENA;
DEMODULATORS;
ELECTRIC CURRENTS;
ELECTRIC IMPEDANCE;
ELECTRODES;
IMAGING TECHNIQUES;
MEDICAL APPLICATIONS;
PERFORMANCE;
POTENTIOMETERS (ELECTRIC MEASURING INSTRUMENTS);
PROGRAMMED CONTROL SYSTEMS;
SIGNAL TO NOISE RATIO;
VOLTMETERS;
ADAPTIVE CURRENT TOMOGRAPH;
COMPUTER CONTROL;
ELECTRICAL IMPEDANCE TOMOGRAPH;
STATIONARY AGAR TARGETS;
RADIOGRAPHY;
ARTICLE;
AUTOMATION;
BREATHING;
ELECTRIC CURRENT;
ELECTRIC POTENTIAL;
ELECTRICAL EQUIPMENT;
HUMAN;
IMPEDANCE;
TOMOGRAPHY;
ALGORITHMS;
CALIBRATION;
COMPUTERS, ANALOG;
ELECTRIC IMPEDANCE;
ELECTRONICS;
EQUIPMENT DESIGN;
HUMAN;
IMAGE PROCESSING, COMPUTER-ASSISTED;
MODELS, STRUCTURAL;
RESPIRATION;
SIGNAL PROCESSING, COMPUTER-ASSISTED;
SUPPORT, U.S. GOV'T, NON-P.H.S.;
SUPPORT, U.S. GOV'T, P.H.S.;
TOMOGRAPHY;
B. Brown, D. Barber, and J. Jossinet, Eds., Clinical Physics and Physiological Measurement, Commission of the European Communities COMAC-BME Workshop, vol. 9, suppl. A, Oct. 1988.
B. Brown, D. Barber, and L. Tarassenko, Eds., Clinical Physics and Physiological Measurement, Commission of the European Communities COMAC-BME Workshop, vol. 8, suppl. A, July 1987.
NOSER: An algorithm for solving the inverse conductivity problem
M. Cheney, D. Isaacson, J. C. Newell, S. Simske, and J. Goble, “NOSER: An algorithm for solving the inverse conductivity problem,” Int. J. Imaging Syst. Technol., 1990.
D. G. Gisser, J. C. Newell, J. C. Goble, R. D. Cook, and C. Hochgraf, “Current sources for impedance imaging systems,” in Proc. 12th Annu. Int. Conf., IEEE Eng. Med. Biol. Soc., 1990, pp. 112–113.
Distinguishability of conductivities by electric current computed tomography
D. Isaacson, “Distinguishability of conductivities by electric current computed tomography,” IEEE Trans. Med. Imaging, vol. MI-5, no. 2, pp. 91–96, 1986.
In-vivo impedance images using sinusoidal current patterns
J. C. Newell, D. Isaacson, M. Cheney, et al., “In-vivo impedance images using sinusoidal current patterns,” in Proc. 14th Annu. Int. Conf., IEEE Eng. Med. Biol. Soc., 1992.