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Original Articles

Numerical study of holographic electromagnetic induction technique for imaging arbitrarily shaped biological objects

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Pages 353-359 | Received 05 Sep 2016, Accepted 21 Oct 2016, Published online: 28 Nov 2016

References

  • Anderson AP. 1977. Microwave holography. Proc JEE. 124:946–962.
  • Born M, Wolf E. 1980. Principles of optics: electromagnetic theory of propagation, interference and diffraction of light. 6th ed. Oxford: Pergamon Press.
  • Farhat NH, Guard WR. 1971. Millimeter wave holographic imaging of concealed weapons. Proc IEEE. 59:1383–1384.10.1109/PROC.1971.8441
  • Gabor D. 1948. A new microscope principle. Nature. 161:777–778.10.1038/161777a0
  • Gabriel C, Gabriel S, Corthout E. 1996. The dielectric properties of biological tissues: I. Literature survey. Phys Med Biol. 41:2231–2249.10.1088/0031-9155/41/11/001
  • Gabriel S, Lau RW, Gabriel C. 1996a. The dielectric properties of biological tissues: II. Measurements in the frequency range 10 Hz to 20 GHz. Phys Med Biol. 41:2251–2269.10.1088/0031-9155/41/11/002
  • Gabriel S, Lau RW, Gabriel C. 1996b. The dielectric properties of biological tissues: III. Parametric models for the dielectric spectrum of tissues. Phys Med Biol. 41:2271–2293.10.1088/0031-9155/41/11/003
  • Granot Y, Ivorra A, Rubinsky B. 2007. Frequency-division multiplexing for electrical impedance tomography in biomedical applications. Int J Biomed Imaging. 2:54798.
  • Griffiths H. 2011. Magnetic induction tomography. Meas Sci Technol. 12:1126–1131.
  • Griffiths H, Gough W, Watson S, Williams RJ. 2007. Residual capacitive coupling and the measurement of permittivity in magnetic induction tomography. Physiol Meas. 28:S301–S311.10.1088/0967-3334/28/7/S23
  • Huang CN, Yu FM, Chung HY. 2007. Rotational electrical impedance tomography”. Meas Sci Technol. 18:2958–2966.10.1088/0957-0233/18/9/028
  • Jacobi J, Larsen LE, Hast CT. 1979. Water-immersed microwave antennas and their application to microwave interrogation of biological targets. IEEE Trans Microwave Theory Tech. 27:70–78.10.1109/TMTT.1979.1129561
  • Joines WT, Zhang Y, Li C, Jirtle RL. 1994. The measured electrical properties of normal and malignant human tissues from 50 to 900 MHz. Med Phys. 21:547–550.
  • Kerner TE, Paulsen KD, Hartov A, Soho SK, Poplack SP. 2002. Electrical impedance spectroscopy of the breast: clinical imaging results in 26 subjects. IEEE Trans Med Imaging. 21:638–645.10.1109/TMI.2002.800606
  • Korjenevsky A, Cherepenin V, Sapetsky S. 2000. Magnetic induction tomography: experimental realization. Physiol Meas. 21:89–94.10.1088/0967-3334/21/1/311
  • Korzhenevsky A, Sapetsky S. 2011. Visualisation of the internal structure of extended conducting objects by magnetoinduction tomography. Bull Russian Acad Sci Phys. 65:1945–1949.
  • Lazebnik M, Popovic D, McCartney L, Watkins CB, Lindstrom MJ, Harter J. 2007. A large-scale study of the ultrawideband microwave dielectric properties of normal, benign and malignant breast tissues obtained from cancer surgeries. Phys Med Biol. 52:6093–6115.10.1088/0031-9155/52/20/002
  • Levanda R, Leshem A. 2010. Synthetic aperture radio telescopes. IEEE Signal Process Mag. 27:14–29.10.1109/MSP.2009.934719
  • Ma X, Peyton AJ, Binns R, Higson SR. 2005. Electromagnetic techniques for imaging the cross-section distribution of molten steel flow in the continuous casting nozzle. IEEE Sens J. 5:224–232.
  • Merwa R, Hollaus K, Oszkar B, Scharfetter H. 2004. Detection of brain oedema using magnetic induction tomography: a feasibility study of the likely sensitivity and detectability. Physiol Meas. 25:347–354.10.1088/0967-3334/25/1/038
  • Peyton AJ, Beck MS, Borges AR, de Oliveira JE, Lyon GM, Yu ZZ, Brown MW, Ferrerra J. 1999. Development of electromagnetic tomography (EMT) for industrial applications. Part 1: sensor design and instrumentation. Proceedings of 1st World Congrss on Industrial Process Tomography, 1999; Buxton. p. 306–312.
  • Scharfetter H, Lackner HK, Rosell J. 2001. Magnetic induction tomography: hardware for multifrequency measurements in biological tissues. Physiol Meas. 22:131–146.10.1088/0967-3334/22/1/317
  • Silver S. 1949. Microwave antenna theory and design, MIT Radiation Laboratory Series. 1st ed. New York, NY: McGraw-Hill.
  • Wang JJ. 1988. An examination of the theory and practices of planar near-field measurement. IEEE Trans Antennas Propag. 6:746–753.10.1109/8.1176
  • Wang L, Al-Jumaily AM, Simpkin R. 2014. Imaging of 3-D dielectric objects using far-field holographic microwave imaging technique. Prog Electromagnet Res B. 61:135–147.10.2528/PIERB14082001
  • Watson S, Wee HC, Griffiths H, Williams RJ. 2011. A highly phase-stable differential detector amplifier for magnetic induction tomography. Physiol Meas. 32:917–926.10.1088/0967-3334/32/7/S14
  • Yin W, Peyton AJ. 2006. A planar EMT system for the detection of faults on thin metallic plates. Meas Sci Technol. 17:2130–2135.10.1088/0957-0233/17/8/011
  • Yu ZZ, Peyton AJ, Conway WF, Xu LA, Beck MS. 1993. Imaging system based on electromagnetic tomography (EMT). Electron Lett. 29:625–626.10.1049/el:19930418
  • Zhang X, Zhu S, He B. 2010. Imaging electric properties of biological tissues by RF field mapping in MRI. IEEE Trans Med Imaging. 29:474–481.10.1109/TMI.2009.2036843

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