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Real-Time Microwave Imaging of a Compressed Breast Phantom With Planar Scanning

机译:平面扫描法对压缩乳房幻影进行实时微波成像

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摘要

Two real-time reconstruction algorithms, i.e., quantitative microwave holography and scattered-power mapping, have been shown to be successful in the imaging of compressed tissue of relatively small thicknesses such as 1 and 2 cm. In both cases, planar data acquisition of frequency-swept transmission coefficients has been employed. Despite the fact that these algorithms are based on a linear forward model of scattering, they have been capable of providing quantitative estimates of the tissue permittivity due to the experimentally derived kernel of the scattering integral. Here, we demonstrate similar performance with a thicker (approximately 5 cm) compressed-breast phantom. This thickness is greater than or comparable to the median thickness employed in mammography, depending on the view (craniocaudal or mediolateral oblique). The two methods are described in a common mathematical framework for the first time. The importance of the system calibration and the choice of a host medium are discussed through experiments. A new method for focusing onto suspect regions is demonstrated. The limitations of real-time imaging are highlighted, along with an outlook to improve the image resolution and suppressing artifacts without sacrificing the reconstruction speed. Future work aims at validation with high complexity, realistic compressed-breast phantoms.
机译:已经显示出两种实时重建算法,即定量微波全息术和散射功率作图,在对相对较小的厚度(例如1和2 cm)的压缩组织进行成像时是成功的。在两种情况下,都采用了频率扫描传输系数的平面数据采集。尽管这些算法基于散射的线性正向模型,但由于散射积分是通过实验得出的核,因此它们能够提供组织介电常数的定量估计。在这里,我们展示了类似的性能,但压缩乳房模型较厚(约5 cm)。该厚度大于或等于乳房X线照相术所用的中位厚度,具体取决于视图(颅尾或斜外侧)。首次在通用数学框架中描述了这两种方法。通过实验讨论了系统校准和选择宿主介质的重要性。演示了一种关注可疑区域的新方法。强调了实时成像的局限性,并提出了在不牺牲重建速度的情况下提高图像分辨率和抑制伪影的前景。未来的工作旨在通过高复杂度,逼真的压缩乳房幻像进行验证。

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