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Reseach Article

Non-Invasive Detection and Treatment Methods on Tumor Growth in Body System by Resonance Frequency Method

Published on None 2011 by K.D. Desai, Manoj S.Sankhe
journal_cover_thumbnail
International Conference and Workshop on Emerging Trends in Technology
Foundation of Computer Science USA
ICWET - Number 5
None 2011
Authors: K.D. Desai, Manoj S.Sankhe
ecc49790-6914-4bd8-8803-ed88c136b54d

K.D. Desai, Manoj S.Sankhe . Non-Invasive Detection and Treatment Methods on Tumor Growth in Body System by Resonance Frequency Method. International Conference and Workshop on Emerging Trends in Technology. ICWET, 5 (None 2011), 15-21.

@article{
author = { K.D. Desai, Manoj S.Sankhe },
title = { Non-Invasive Detection and Treatment Methods on Tumor Growth in Body System by Resonance Frequency Method },
journal = { International Conference and Workshop on Emerging Trends in Technology },
issue_date = { None 2011 },
volume = { ICWET },
number = { 5 },
month = { None },
year = { 2011 },
issn = 0975-8887,
pages = { 15-21 },
numpages = 7,
url = { /proceedings/icwet/number5/2101-bm380/ },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Proceeding Article
%1 International Conference and Workshop on Emerging Trends in Technology
%A K.D. Desai
%A Manoj S.Sankhe
%T Non-Invasive Detection and Treatment Methods on Tumor Growth in Body System by Resonance Frequency Method
%J International Conference and Workshop on Emerging Trends in Technology
%@ 0975-8887
%V ICWET
%N 5
%P 15-21
%D 2011
%I International Journal of Computer Applications
Abstract

The literature survey was carried to identify the Non- Invasive Detection and Treatment Methods on Tumor Growth in Body System by Resonance Frequency Method. Techniques and conclusions are given; a table is given listing Non Invasive Treatment methods on tumor growth in body system over the last 23 years. Literature Survey will follow the devising methodology and technique to find out the resonant frequency of tumor growth area of body and applying that resonant frequency to generate heat for ablation of tumor and further growth of tumor.

References
  1. George D. OClock, Electrotherapeutic Devices: Principles, Design, and Applications, Artech house publisher, pp. 43-80, 2006
  2. Andrzej j. Surowiec, Stanislaw S. Stuchly, J. Robin Barr, and Arvind Swarup, “Dielectric Properties of Breast Carcinoma and the Surrounding Tissues,” IEEE Transactions on Biomedical Engineering, Vol.35, pp. 257-262, 1988.
  3. Markus Osypka and Eberhard Gersing, “Tissue Impedance Spectra and the Appropriate Frequencies for EIT,” Physiol. Meas. 16(1995), pp. 49-55, 1995.
  4. Leslie William Organ, “Electrical Impedance Method and Apparatus for Detecting and Diagnosing Diseases,” Patent Number: 6,122,544, pp. 1-14, 2000.
  5. Vladimir A. Cherepenin, Alexander Y. Karpov, Alexander V. Korjenevsky, Vladimir N. Kornienko, Yury S. Kultiasov, Mikhail B. Ochapkin, Olga V. Trochanova and J. David Meister,” Three-Dimensional EIT Imaging of Breast Tissues: System Design and Clinical Testing,” IEEE Transactions on Medical Engineering, Vol.21, pp. 662-667, 2002.
  6. Tyna A Hope and Sian E Iles, “ The use of Electrical Impedance Scanning in the Detection of Breast Cancer,” Breast Cancer Research, Vol. 6 No. 2, pp. 70-74, 2003.
  7. Karl H. Schoenbach, Ravindra P. Joshi, Juergen F. Kolb, Nianyong Chen, Michael Stacey, Peter F. Blackmore, E. Stephen Buescher and Stephen J. Beebe, “Ultrashort Electrical Pulses Open a New Gateway Into Biological Cells,” Proceedings of the IEEE, Vol. 92 No. 7,pp. 1122-1137, 2004.
  8. Andrew Hines-Peralta, and S. Nahum Goldberg, “Review of Radiofrequency Ablation for Renal Cell Carcinoma,” Clinical Cancer Research, Vol. 10, pp. 6328-6334, 2004.
  9. Elizabeth Rufus, Zachariach C. Alex, and Lazar Mathew, “Dielectric Relaxation Studies of Biological Tissues in the Microwave Frequency Range,” APMC Proceedings, 2005.
  10. Sachiko Yamaguchi, Mari Ogiue-Ikeda, Masaki Sekino, and Shoogo Ueno,” Effects of Pulsed Magnetic Stimulation on Tumor Development and Immune Functions in Mice,” Bioelectronmagnetics, Vol.27, pp. 64-72, 2006.
  11. Gary J. Saulnier, Ning Liu, Chandana Tamma, Honjun Xia, Tzu-Jen Kao, J. C. Newell, and David Isaacson,” An Electrical Impedance Spectroscopy System for Breast Cancer Detection,” IEEE Conference, pp. 4154-4157, 2007.
  12. Alberto Yufera, and Adoracion Rueda,” A CMOS Bio-Impedance Measurement System,” IEEE, 2009.
  13. Serhat Altunc,” Subnanosecond Pulsed-Power Generated Electric Fields for Cancer Treatment,” Nuclear and Plasma Sciences Society, 2009.
  14. Hans W Giertz, ‘‘New insights into electromagnetic processes in cancer,Uppsa Research’’, Miklagard, SE-646 93 Gnesta, Sweden, pp. 1-8, 2010
Index Terms

Computer Science
Information Sciences

Keywords

Resonance in cancer cells Electrical Impedance Tomography Electrical Impedance Scanning Tumor localization