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A New Metasurface-Enhanced Microstrip Patch Antenna for Haemorrhagic Stroke Detection

机译:一种新的METASURFACE增强微带贴片斑点斑块斑块斑块斑点检测

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This paper presents a new printed square monopole antenna (PSMA) for haemorrhagic stroke detection, enhanced by a metasurface (MTS) superstrate. To show the capabilities of MTS technology in microwave brain imaging, three different tomographic systems are compared in CST Microwave Studio. Our previous developed headband scanner operating in a lossy matching medium is compared to two brain scanners operating in air: a 8-PSMA system and a 8-MTS-enhanced PSMA system. For image reconstruction we used the distorted Born iterative method (DBIM) combined with two-step iterative shrinkage/thresholding (TwIST) algorithm. Our results indicate that a blood-mimicking target placed inside the brain volume of our head model can be detected avoiding the use of a liquid and bulky matching medium. In addition, our MTS superstrate enhances the antennas' reflection coefficient and increases the signal difference due to the presence of the target, which translates into more accurate reconstructions. Thus, MTS technology may be a significant hardware advancement towards the development of functional and ergonomic MWI scanners for haemorrhage detection.
机译:本文介绍了一种新的印刷方形单极天线(PSMA),用于出血性描边检测,由Metasurface(MTS)超级塑造增强。为了展示微波脑成像中MTS技术的能力,在CST微波工作室比较了三种不同的断层系统。我们以前的开发的头带扫描仪在损失匹配介质中运行,与空气运行的两个脑扫描仪进行比较:8-PSMA系统和8MTS增强的PSMA系统。对于图像重建,我们使用扭曲的出生方法(DBIM)与两步迭代收缩/阈值(Twist)算法组合。我们的结果表明,可以检测避免使用液体和庞大的匹配培养基的血模肌血模靶。另外,我们的MTS克赖斯特勒斯增强了天线的反射系数,并增加了由于目标的存在而增加的信号差,这转化为更准确的重建。因此,MTS技术可能是朝向出血检测的功能和符合人体工程学MWI扫描仪的显着硬件进步。

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