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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >High-Resolution Microwave Breast Imaging Using a 3-D Inverse Scattering Algorithm With a Variable-Strength Spatial Prior Constraint
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High-Resolution Microwave Breast Imaging Using a 3-D Inverse Scattering Algorithm With a Variable-Strength Spatial Prior Constraint

机译:具有可变强度空间先验约束的3D逆散射算法的高分辨率微波乳房成像

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Microwave inverse scattering is an exploratory imaging modality with potential for several clinical breast imaging applications, including density evaluation, cancer detection, and treatment monitoring. However, conventional regularization techniques used to solve the ill-posed inverse problem typically result in blurred boundaries between tissue structures exhibiting dielectric contrast, thereby limiting the effective resolution. We present a method to improve microwave breast imaging resolution that incorporates a priori information about the boundaries between different tissues in the breast into the inverse scattering algorithm. This spatial prior information can be derived from another imaging modality, such as magnetic resonance imaging. Our method exploits the fact that the dielectric properties within a tissue type exhibit low to moderate variability by favoring solutions to the inverse scattering problem, which have small variations in dielectric properties within each tissue region. The amount of variation tolerated in each regions is controlled by a spatial prior constraint parameter. We demonstrate the feasibility of the method by imaging detailed, anatomically inspired numerical 3-D breast phantoms. The performance in the presence of different levels of noise and for different choices of the constraint parameter is evaluated. We also demonstrate the robustness of the algorithm with respect to errors in the spatial prior information.
机译:微波反向散射是一种探索性成像方式,具有在多种临床乳腺成像应用中的潜力,包括密度评估,癌症检测和治疗监测。然而,用于解决不适定的逆问题的常规正则化技术通常导致表现出介电对比度的组织结构之间的边界模糊,从而限制了有效分辨率。我们提出了一种提高微波乳房成像分辨率的方法,该方法将关于乳房中不同组织之间边界的先验信息纳入了反向散射算法中。该空间先验信息可以从诸如磁共振成像的另一成像模态导出。我们的方法利用了以下事实:通过支持逆散射问题的解决方案,组织类型内的介电特性表现出低到中等的变异性,该问题在每个组织区域内的介电特性都有很小的变化。每个区域中容许的变化量由空间先验约束参数控制。我们通过成像详细的,解剖学启发的数值3-D乳房幻像来证明该方法的可行性。评估存在不同噪声水平和约束参数选择不同时的性能。我们还证明了该算法针对空间先验信息中的错误的鲁棒性。

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