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Evaluation of 3-D Acquisition Surfaces for Radar-Based Microwave Breast Imaging

机译:基于雷达的微波乳房成像的3D采集表面评估

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摘要

This study investigates the impact that the acquisition surface has on the internal coverage of an object in the context of radar-based near-field microwave (MW) breast imaging. We define an acquisition surface as the surface over, which data are collected. Three different three-dimensional (3-D) data acquisition surfaces are investigated: 1) cylindrical, 2) hemispherical, and 3) patient specific. Three 3-D numerical breast models are used for the study. A realistic ultra-wideband (UWB) antenna generates incident fields and records the total fields. The responses from targets are analyzed, and object coverage is evaluated in terms of range distances, cross-range distances, and cumulative radiated power directed into the object by the antenna array embedded in the acquisition surface. Images are formed to verify these observations. We demonstrate that a patient-specific acquisition surface provides greater responses from targets, superior object coverage and improved images compared to the other acquisition surfaces studied.
机译:这项研究调查了在基于雷达的近场微波(MW)乳房成像的情况下,采集表面对物体内部覆盖的影响。我们将采集表面定义为收集数据的表面。研究了三种不同的三维(3-D)数据采集表面:1)圆柱,2)半球和3)特定于患者。这项研究使用了三个3-D数值乳腺模型。现实的超宽带(UWB)天线会生成入射场并记录总场。分析来自目标的响应,并根据距离距离,跨距离距离和由嵌入在采集表面中的天线阵列定向到对象的累积辐射功率来评估对象的覆盖范围。形成图像以验证这些观察结果。我们证明,与其他研究的获取表面相比,特定于患者的获取表面可提供来自目标的更大响应,出色的对象覆盖范围和改进的图像。

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