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Detection of haemorrhagic stroke in simulation and realistic 3-D human head phantom using microwave imaging

机译:用微波成像检测仿真和现实三维人头模拟中的出血性脑卒中

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This research presents the use and validation of a low complexity microwave imaging procedure for brain imaging, where antennas operate in free-space. In particular, we employ only two microstrip antennas, operating between 1 and 2 GHz for successful detection of the haemorrhagic stroke. Detection is demonstrated through simulation and measurements. Simulations have been performed using an anthropomorphic human head model where a haemorrhagic stroke has been inserted. In addition, multi-bistatic frequency-domain measurements have been performed to collect the transfer function (S21) between the two antennas inside an anechoic chamber using a multi-layered phantom mimicking a human head. Images have been obtained through Huygens principle. To reconstruct the image, subtraction artefact removal method between the data of a healthy head and the data of a head with stroke has been initially employed in simulations. Next, the rotation subtraction artefact removal method has been used both in simulation and in measurements. It has been verified that both artefact removal procedures allow detection. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究介绍了对脑成像的低复杂性微波成像程序的使用和验证,天线在自由空间中运行。特别是,我们只使用两个微带天线,在1到2GHz之间工作,以便成功地检测出血性中风。通过模拟和测量来证明检测。使用拟人的人头模型进行了模拟,其中插入了出血性脑卒中的血管脑卒中。另外,已经执行多双面频域测量以使用模拟人头部的多层虚线来收集在AneChice腔室内的两个天线之间的传递函数(S21)。通过Huygens原则获得了图像。为了重建图像,最初在模拟中最初采用了在健康头部和具有行程的头部数据的数据之间的减法假除方法。接下来,在模拟和测量中使用旋转减法假除方法。已经验证了这两个人工制品去除程序允许检测。 (c)2020 elestvier有限公司保留所有权利。

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