Two-Element T-Array for Cross-Polarized Breast Tumor Detection

作者

  • H. Kanj Department of Electrical and Computer Engineering McGill University, 3480 University Street Montreal, Quebec Canada H3A 2A7
  • M. Popovi ́c Department of Electrical and Computer Engineering McGill University, 3480 University Street Montreal, Quebec Canada H3A 2A7

关键词:

Two-Element T-Array for Cross-Polarized Breast Tumor Detection

摘要

This paper reports on a computational study of a 2-element cross-polarized antenna array for breast cancer detection. The “Dark Eyes” antenna is used in a T-arrangement to form the array. The antenna return loss is below -10dB in the range 2.3-10.3 GHz and the cross-polarized mutual coupling is less than -30dB for frequencies over 2.4 GHz. Using the finite-difference time-domain (FDTD) method, an ultra-wideband (UWB) pulse is transmitted in the numerical breast phantom and the co- and cross-polarized back-scatter response is recorded from tumors at different locations. The breast phantom was modeled as a simple layered medium of skin and fat. The dispersive properties of layers were introduced through a Debye model. Simulation results for a spherical and a cylindrical tumor of different orientations are presented and discussed.

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参考

Y. Xie, B. Guo, L. Xu, J. Li, and P. Stoica, “Mul-

tistatic adaptive microwave imaging for early breast

cancer detection,” IEEE Transactions on Biomedical

Engineering, vol. 53, pp. 1647–1657, August 2006.

D. J. Kurrant, E. C. Fear, and D. T. Westwick,

“Tumor estimation in tissue sensing adaptive radar

(tsar) signals,” in Canadian Conference on Electrical

and Computer Engineering, 2007.

ACES JOURNAL, VOL. 23, NO. 3, SEPTEMBER 2008

S. C. Hagness, A. Taflove, and J. E. Bridges, “Three-

dimensional FDTD analysis of a pulsed microwave

confocal system for breast cancer detection: Design

of an antenna-array element,” IEEE Trans. Antennas

Propagat., vol. 47, pp. 783–791, May 1999.

X. Yun, E. C. Fear, and R. H. Johnston, “Compact

antenna for radar-based breast cancer detection,”

IEEE Trans. Antennas Propagat., vol. 53, pp. 2374–

, August 2005.

H. Kanj and M. Popovic, “Miniaturized microstrip-

fed “Dark Eyes” antenna for near-field microwave

sensing,” IEEE Antennas Wireless Propagat. Lett.,

vol. 4, pp. 397–401, 2005.

(2007) Rogers website. [Online]. Available:

http://www.rogerscorporation.com

(2007) Ohmega website. [Online]. Available:

http://www.ohmega.com/

H. Kanj and M. Popovic, “T- and X-arrangement

of “Dark Eyes” antennas for microwave sensing ar-

ray,” in Proc. IEEE AP-S International Symposium,

Albuquerque, NM, pp. 1111–1114, July 2006.

——, “Two-element T-array for cross-polarized

breast tumor detection,” in The 23rd Annual Review

of Progress in Applied Computational Electromag-

netics, Verona, Italy, pp. 846–850, March 2007.

S. Gabriel, R. W. Lau, and C. Gabriel, “The dielec-

tric properties of biological tissues-ii: Measurements

on the frequency range 10 Hz to 20 GHz,” Physics

in Medicine and Biology, vol. 41, pp. 2251–2269,

November 1996.

(2007) SEMCAD website. [Online]. Available:

http://www.semcad.com/

(2007) Ansoft website. [Online]. Available:

http://www.ansoft.com/

A. Taflove and S. Hagness, Eds., Computational

Electrdynamics: The Finite-Difference Time-Domain

Method. Boston, MA: Artech House, 2005.

M. Converse, E. J. Bond, B. D. Van Veen, and

S. C. Hagness, “A computational study of ultra-

wideband versus narrowband microwave hyperther-

mia for breast cancer treatment,” IEEE Trans. Mi-

crowave Theory Tech., vol. 54, pp. 2169–2180, May

M. Lazebnik, L. McCartney, D. Popovic, C. B.

Watkins, M. J. Lindstrom, J. Harter, S. Sewall,

A. Magliocco, J. H. Booske, M. Okoniewski, and

S. C. Hagness, “A large-scale study of the ultraw-

ideband microwave dielectric properties of normal

breast tissue obtained from reduction surgeries,”

Physics in Medicine and Biology, vol. 52, pp. 2637–

, 2007.

M. Lazebnik, D. Popovic, L. McCartney, C. B.

Watkins, M. J. Lindstrom, J. Harter, S. Sewall,

T. Ogilvie, A. Magliocco, T. M. Breslin, W. Temple,

D. Mew, J. H. Booske, M. Okoniewski, and S. C.

Hagness, “A large-scale study of the ultrawideband

microwave dielectric properties of normal, benign

and malignant breast tissues obtained from cancer

surgeries,” Physics in Medicine and Biology, vol. 52,

pp. 6093–6115, 2007.

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已出版

2022-06-17

栏目

General Submission