Progress In Electromagnetics Research B · 2013 · 31 citations · 28 references
Biconical AntennaEngineeringSensor ArrayAdvanced ImagingGlandular Breast PhantomsSmart AntennaBiomedical EngineeringBreast ImagingImaging RadarRadar Signal ProcessingNuclear MedicineGlandular PhantomsRadiologyHealth SciencesMedical ImagingSynthetic Aperture RadarAntennaMicrowave AntennaRadar ApplicationUltrasoundSignal ProcessingRadar ImagingRadarBiomedical Imaging
A biconical antenna has been developed for ultra- wideband sensing. A wide impedance bandwidth of around 115% at bandwidth 3.73{14GHz is achieved which shows that the proposed antenna exhibits a fairly sensitive sensor for microwave medical imaging applications. The sensor and instrumentation is used together with an improved version of delay and sum image reconstruction algorithm on both fatty and glandular breast phantoms. The relatively new imaging set-up provides robust reconstruction of complex permittivity proflles especially in glandular phantoms, producing results that are well matched to the geometries and composition of the tissues. Respectively, the signal-to-clutter and the signal-to-mean ratios of the improved method are consistently higher than 5dB and 10dB, corresponding to an average increase in image fldelity of more than 140% compared to conventional radar focusing technique.
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Mariya Lazebnik, D. Popovic, L. McCartney et al. · Physics in Medicine and Biology · 2007 · 1.2K citations
The measured electrical properties of normal and malignant human tissues from 50 to 900 MHz
William T. Joines, Yang Zhang, Chenxing Li et al. · Medical Physics · 1994 · 746 citations
Mariya Lazebnik, L. McCartney, D. Popovic et al. · Physics in Medicine and Biology · 2007 · 691 citations
Engineering, Biomedical Engineering, Electromagnetic Compatibility +17