Resonantly loaded apertures for high-resolution near-field surface imaging

被引:5
|
作者
Malyuskin, Oleksandr [1 ]
Fusco, Vincent [1 ]
机构
[1] Queens Univ Belfast, Inst Elect Commun & Informat Technol, Belfast BT3 9DT, Antrim, North Ireland
关键词
microwave imaging; hyperthermia; biological effects of microwaves; dielectric materials; microwave spectroscopy; cancer; medical image processing; skin; tumours; microwave probe; loaded aperture geometry; dielectrics characterisation; high resolution near field imaging; microwave spectroscopic characterisation; thin lossy dielectric samples; biological materials; subwavelength lossy dielectric strip; amplitude contrast; spatial resolution; skin cancer identification; artificial dielectric model; artificial malignant tumour; phase contrast; artificial healthy skin; microwave hyperthermia applications; BIOLOGICAL TISSUES; DIELECTRIC-PROPERTIES; PERMITTIVITY;
D O I
10.1049/iet-smt.2014.0337
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A novel type of microwave probes based on the loaded aperture geometry has been proposed and experimentally evaluated for dielectrics characterisation and high-resolution near-field imaging. Experimental results demonstrate the possibility of very accurate microwave spectroscopic characterisation of thin lossy dielectric samples and biological materials containing water. High-resolution images of the subwavelength lossy dielectric strips and wet and dry leaves have been obtained with amplitude contrast around 10-20 dB and spatial resolution better than one-tenth of a wavelength in the near-field zone. A microwave imaging scenario for the early-stage skin cancer identification based on the artificial dielectric model has also been explored. This model study shows that the typical resolution of an artificial malignant tumour with a characteristic size of one-tenth of a wavelength can be discriminated with at least 6 dB amplitude and 50 degrees phase contrast from the artificial healthy skin and with more than 3 dB contrast from a benign lesion of the same size. It has also been demonstrated that the proposed device can efficiently deliver microwave energy to very small, subwavelength, focal areas which is highly sought in the microwave hyperthermia applications.
引用
收藏
页码:783 / 791
页数:9
相关论文
共 50 条
  • [1] Resonantly loaded apertures for sub-diffraction near-field imaging and surface probing
    Malyuskin, Oleksandr
    Fusco, Vincent
    IET Microwaves Antennas & Propagation, 2015, 9 (06) : 533 - 540
  • [2] Near Field Enhancement and Subwavelength Imaging Using Resonantly Loaded Apertures
    Malyuskin, Oleksandr
    Fusco, Vincent
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2014, 62 (06) : 3130 - 3140
  • [3] High-Resolution UHF Near-Field Imaging Probe
    Abou-Khousa, Mohamed A.
    Shafi, K. T. Muhammed
    Xie Xingyu
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2018, 67 (10) : 2353 - 2362
  • [4] High-Resolution Microwave Near-Field Surface Imaging Using Resonance Probes
    Malyuskin, Oleksandr
    Fusco, Vincent F.
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2016, 65 (01) : 189 - 200
  • [5] Near-field recording technique for high-resolution fluorescent imaging
    Moriguchi, C.
    Inami, W.
    Egami, C.
    Kawata, Y.
    Terakawa, S.
    Tsuchimori, M.
    Watanabe, O.
    APPLIED PHYSICS LETTERS, 2010, 96 (24)
  • [6] Theory of resonantly enhanced near-field imaging
    Tsang, Mankei
    Psaltis, Demetri
    OPTICS EXPRESS, 2007, 15 (19): : 11959 - 11970
  • [7] Near-Field High-Resolution SAR Imaging with Sparse Sampling Interval
    Zhao, Chengyi
    Xu, Leijun
    Bai, Xue
    Chen, Jianfeng
    SENSORS, 2022, 22 (15)
  • [8] Near-Field High-Resolution Imaging Based on Inverse Equivalent Source Methods
    Azhar, A.
    Neitz, O.
    Knapp, J.
    Baumgartner, R.
    Mitic, G.
    Eibert, T. F.
    PROCEEDINGS OF THE 2019 INTERNATIONAL CONFERENCE ON ELECTROMAGNETICS IN ADVANCED APPLICATIONS (ICEAA), 2019, : 1069 - 1069
  • [9] High-Resolution Squinted SAR Imaging Algorithm Applied in the Near-Field Environment
    Wang, Shijia
    Wang, Shibo
    Liu, Wanli
    COMPLEXITY, 2020, 2020
  • [10] Dielectric nanohole array metasurface for high-resolution near-field sensing and imaging
    Donato Conteduca
    Isabel Barth
    Giampaolo Pitruzzello
    Christopher P. Reardon
    Emiliano R. Martins
    Thomas F. Krauss
    Nature Communications, 12