Gouzouasis Ioannis A, Karathanasis Konstantinos T, Karanasiou Irene S, Uzunoglu Nikolaos K
National Technical University of Athens, Greece.
Bioelectromagnetics. 2010 Jul;31(5):335-49. doi: 10.1002/bem.20572.
A prototype system for passive intracranial monitoring using microwave radiometry is proposed. It comprises an ellipsoidal conductive wall cavity to achieve beamforming and focusing, in conjunction with sensitive multiband receivers for detection. The system has already shown the capability to provide temperature and/or conductivity variations in phantoms and biological tissue. In this article, a variant of the initially constructed modality is theoretically and experimentally investigated. Specifically, dielectric matching materials are used in an effort to improve the system's focusing attributes. The theoretical study investigates the effect of dielectric matching materials on the system's detection depth, whereas measurements with phantoms focus on the investigation of the system's detection level and spatial resolution. The combined results suggest that the dielectric matching layers lead to the improvement of the system's detection depth and temperature detection level. Also, the system's spatial resolution is explored at various experimental setups. Theoretical and experimental results conclude that with the appropriate combination of operation frequencies and dielectric layers, it is possible to monitor areas of interest inside human head models with a variety of detection depths and spatial resolutions.
提出了一种用于无源颅内监测的微波辐射测量原型系统。它包括一个椭圆形导电壁腔,用于实现波束形成和聚焦,并结合灵敏的多频段接收器进行检测。该系统已经显示出能够提供体模和生物组织中的温度和/或电导率变化。在本文中,对最初构建的模式的一种变体进行了理论和实验研究。具体而言,使用介电匹配材料以努力改善系统的聚焦特性。理论研究考察了介电匹配材料对系统检测深度的影响,而对体模的测量则侧重于对系统检测水平和空间分辨率的研究。综合结果表明,介电匹配层可提高系统的检测深度和温度检测水平。此外,在各种实验设置下对系统的空间分辨率进行了探索。理论和实验结果得出结论,通过适当组合工作频率和介电层,可以在各种检测深度和空间分辨率下监测人头模型内的感兴趣区域。