Portable Microwave Head Imaging Device using Low-Cost VNA

Muhammad Hashir, M. Q. Mahmood, K. Riaz, M. Zubair
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引用次数: 1

Abstract

This paper presents a low-cost prototype of a portable, non-invasive, and easy-to-operate microwave brain imaging device for potential applications in the diagnosis and continuous bedside monitoring of hemorrhagic brain stroke patients. The state-of-the-art in microwave imaging systems for brain stroke detection rely on the use of laboratory grade vector network analyzer (VNA) which enhance the cost of hardware thus limiting the usefulness of such systems in under-developed countries and low-income population. Our proposed hardware setup is based on a very low-cost commercially available compact VNA and does not require coupling medium or calibration of antennas at each scan. The proposed procedure has been validated through realistic full-wave electromagnetic simulations and hardware measurements on in-house anthropomorphic human head phantoms. The radar-based image reconstruction algorithm has been able to detect stroke mimicking inclusion of size up to 1mm in simulations and up to 10 mm in hardware measurements.
使用低成本VNA的便携式微波头部成像装置
本文介绍了一种低成本的便携式、无创、易于操作的微波脑成像设备的原型,该设备在出血性脑卒中患者的诊断和连续床边监测中具有潜在的应用前景。用于脑中风检测的最先进的微波成像系统依赖于使用实验室级矢量网络分析仪(VNA),这增加了硬件成本,从而限制了此类系统在不发达国家和低收入人群中的有用性。我们提出的硬件设置基于非常低成本的市售紧凑型VNA,并且在每次扫描时不需要耦合介质或天线校准。所提出的程序已通过真实的全波电磁模拟和内部拟人化人头模型的硬件测量进行了验证。基于雷达的图像重建算法已经能够在模拟中检测到尺寸为1mm的笔画模拟包含,在硬件测量中检测到尺寸为10mm的笔画模拟包含。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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