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首页> 外文期刊>International journal of antennas and propagation >Microwave Tomography System for Methodical Testing of Human Brain Stroke Detection Approaches
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Microwave Tomography System for Methodical Testing of Human Brain Stroke Detection Approaches

机译:微波层析成像系统,用于系统检测人脑中风的检测方法

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摘要

In this work, a prototype of a laboratory microwave imaging system suitable to methodically test the ability to image, detect, and classify human brain strokes using microwave technology is presented. It consists of an antenna array holder equipped with ten newly developed slot bowtie antennas, a 2.5 D reconfigurable and replaceable human head phantom, stroke phantoms, and related measuring technology and software. This prototype was designed to allow measurement of a complete S-matrix of the antenna array. The reconfigurable and replaceable phantom has currently 23 different predefined positions for stroke phantom placement. This setting allows repeated measurements for the stroke phantoms of different types, sizes/shapes, and at different positions. It is therefore suitable for large-scale measurements with high variability of measured data for stroke detection and classification based on machine learning methods. In order to verify the functionality of the measuring system, S-parameters were measured for a hemorrhagic phantom sequentially placed on 23 different positions and distributions of dielectric parameters were reconstructed using the Gauss-Newton iterative reconstruction algorithm. The results correlate well with the actual position of the stroke phantom and its type.
机译:在这项工作中,提出了一种实验室微波成像系统的原型,适用于系统地测试使用微波技术对人脑中风进行成像,检测和分类的能力。它由一个天线阵列固定器组成,该天线阵列固定器配备了十个新开发的缝隙领结天线,一个2.5 D可重配置和可更换的人头幻像,笔触幻像以及相关的测量技术和软件。该原型设计用于允许测量天线阵列的完整S矩阵。可重配置和可替换体模当前具有23个不同的预定义位置,用于笔触体模放置。此设置允许对不同类型,大小/形状和不同位置的笔触幻影进行重复测量。因此,它适用于基于机器学习方法的行程检测和分类的测量数据变化很大的大规模测量。为了验证测量系统的功能,对依次放置在23个不同位置的出血体模测量S参数,并使用高斯-牛顿迭代重建算法重建介电参数的分布。结果与笔画体模的实际位置及其类型密切相关。

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