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A large-scale study of the ultrawideband microwave dielectric properties of normal breast tissue obtained from reduction surgeries

Physics in Medicine and Biology · 2007 · Vol. 52(10) · pp. 2637–2656
Mariya LazebnikL. McCartneyD. PopovicCynthia B WatkinsMary J. LindstromJosephine HarterSarah SewallAnthony MaglioccoJohn H. BooskeM. OkoniewskiSusan C. Hagness

Abstract

The efficacy of emerging microwave breast cancer detection and treatment techniques will depend, in part, on the dielectric properties of normal breast tissue. However, knowledge of these properties at microwave frequencies has been limited due to gaps and discrepancies in previously reported small-scale studies. To address these issues, we experimentally characterized the wideband microwave-frequency dielectric properties of a large number of normal breast tissue samples obtained from breast reduction surgeries at the University of Wisconsin and University of Calgary hospitals. The dielectric spectroscopy measurements were conducted from 0.5 to 20 GHz using a precision open-ended coaxial probe. The tissue composition within the probe's sensing region was quantified in terms of percentages of adipose, fibroconnective and glandular tissues. We fit a one-pole Cole-Cole model to the complex permittivity data set obtained for each sample and determined median Cole-Cole parameters for three groups of normal breast tissues, categorized by adipose tissue content (0-30%, 31-84% and 85-100%). Our analysis of the dielectric properties data for 354 tissue samples reveals that there is a large variation in the dielectric properties of normal breast tissue due to substantial tissue heterogeneity. We observed no statistically significant difference between the within-patient and between-patient variability in the dielectric properties.

Microwave Imaging and Scattering AnalysisMicrowave and Dielectric Measurement TechniquesUltrasound Imaging and ElastographyMicrowaveDielectricMaterials scienceBreast cancerAdipose tissueBreast tissuePermittivityReduction (mathematics)Biomedical engineeringNuclear magnetic resonance

MeSH terms

BreastElectric ConductivityFemaleHumansMicrowavesMammaplastyElectric Capacitance

Funding

  • National Institutes of Health
Citations
691
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References
Dielectric properties of breast carcinoma and the surrounding tissues
IEEE Transactions on Biomedical Engineering · 1988 · 724 citations
Confocal microwave imaging for breast cancer detection: localization of tumors in three dimensions
IEEE Transactions on Biomedical Engineering · 2002 · 900 citations
A clinical prototype for active microwave imaging of the breast
IEEE Transactions on Microwave Theory and Techniques · 2000 · 767 citations
Microwave imaging via space-time beamforming for early detection of breast cancer
IEEE Transactions on Antennas and Propagation · 2003 · 728 citations
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