Title :
A mathematical model for breast cancer lesion estimation: electrical impedance technique using TS2000 commercial system
Author :
Seo, Jin Keun ; Kwon, Ohin ; Ammari, Habib ; Woo, Eung Je
Author_Institution :
Dept. of Math., Yonsei Univ., Seoul, South Korea
Abstract :
We present a mathematical model to analyze transadmittance data for the detection of breast cancer using TransScan TS2000 commercial system. The model was constructed based on the assumption that a lesion exists near the surface of a breast region. The breast region that is considered as a background is assumed to be homogeneous at least near the surface where we attach a planar array of electrodes. Based on the model, we developed a lesion estimation algorithm utilizing single- or multifrequency transadmittance data. The approximate ratio of two conductivity values for the lesion and background needs to be known to estimate the size of the lesion even though the location estimate does not require this ratio. From the results of numerical simulations with added noise, we suggest better ways of interpreting TS2000 transadmittance images for the detection of breast cancer with improved accuracy. Since this study provides a rigorous mathematical modeling of TS2000 commercial system, it will be possible to apply the technique to lesion estimation problems based on more realistic models of breast regions in future studies.
Keywords :
bioelectric phenomena; biological organs; biomedical electrodes; cancer; electric impedance imaging; feature extraction; medical signal processing; physiological models; tumours; TransScan TS2000 commercial system; breast cancer lesion estimation; conductivity; electrical impedance technique; planar electrode arrays; transadmittance images; Breast cancer; Cancer detection; Conductivity; Data analysis; Electrodes; Lesions; Mathematical model; Numerical simulation; Planar arrays; Surface impedance; Breast Neoplasms; Computer Simulation; Diagnosis, Computer-Assisted; Electric Impedance; Equipment Failure Analysis; Female; Humans; Models, Biological;
Journal_Title :
Biomedical Engineering, IEEE Transactions on
DOI :
10.1109/TBME.2004.834261