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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Sensitivity enhancement of super resolution breast tumour imaging with far-field time reversal mirror integrating with multi-layered sub-wavelength patch scatterers
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Sensitivity enhancement of super resolution breast tumour imaging with far-field time reversal mirror integrating with multi-layered sub-wavelength patch scatterers

机译:具有多层亚波长贴片散射体的远场时间逆镜超分辨率乳腺肿瘤成像的敏感性增强

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摘要

We present numerical simulation study of super-resolution imaging of closely spaced sub-wavelength size breast tumours with low cost microwave MIMO bowtie antenna array integrating with near-field planar multi-layered sub-wavelength patch (MLSWP) scatterers by using a monopole as the excitation source. The MLSWP scatterers, serving as transforming structures for the propagation of evanescent waves for sub-wavelength breast tumours imaging with far-field time reversal technique incorporating with bowtie antenna time reversal mirror, are investigated in this paper. The use of the MLSWP scatterers has enhanced the directivity and gain of the traditional monopole resulting in the enhanced scattering amplitudes of the tumour inclusions in the breast. The scattering intensity of the tumours has been enhanced as compared to imaging without the MLSWP scatterers. We propose a tumour imaging scheme using a bowtie antenna array with far-field electromagnetic time reversal for which tumours of sub-wavelength dimensions of 2 mm, 4 mm and 6 mm at sub-wavelength inter tumour distances have been imaged from our simple breast model with super-resolution operating at 2.45 GHz. This will greatly enhance the early imaging of breast tumours in the fight against breast cancer whiles attaining a cost effective biomedical imaging system since the antennas and MLSWP scatterers are low cost microwave components.
机译:我们通过使用单极作为紧密间隔的子波长尺寸的乳房肿瘤的低成本微波MIMO蝶形天线阵列与近场平面多层副波长补丁(MLSWP)散射积分的超分辨率成像的本数值模拟研究激励源。的MLSWP散射体,用作转化结构,用于渐逝波的为副波长乳腺肿瘤与蝴蝶结天线时间反转镜结合远场时间反演技术成像的传播,在此纸的影响。 MLSWP散射体的使用增强了传统单极的方向性和增益,导致乳房中肿瘤夹杂物的增强散射振幅。与没有MLSWP散射体的成像相比,肿瘤的散射强度已经提高。我们提出了一种使用具有远场电磁时间逆转的弓形天线阵列的肿瘤成像方案,其中副波长跨肿瘤距离的副波长尺寸为2mm,4mm和6mm的肿瘤已经从我们的简单乳房模型成像具有超级分辨率,在2.45 GHz下运行。这将大大提高乳腺癌在抗乳腺癌中的早期成像,以获得成本有效的生物医学成像系统,因为天线和MLSWP散射仪是低成本的微波部件。

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