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Whole-microwave system modeling for brain imaging

机译:用于大脑成像的全微波系统建模

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In this paper, we present the results of a whole-system modeling of a microwave measurement prototype for brain imaging, consisting of 160 ceramic-loaded antennas working around 1 GHz. The modelization has been performed using open source FreeFem++ solver. Quantitative comparisons were performed using commercial software Ansys-HFSS and measurements. Coupling effects between antennas are studied with the empty system (without phantom) and simulations have been carried out with a fine numerical brain phantom model issued from scanner and MRI data for determining the sensitivity of the system in realistic configurations.
机译:在本文中,我们介绍了用于脑部成像的微波测量原型的全系统建模结果,该原型由160个工作频率为1 GHz的陶瓷负载天线组成。已使用开源FreeFem ++求解器进行了建模。使用商业软件Ansys-HFSS和测量进行定量比较。使用空系统(无模型)研究天线之间的耦合效应,并使用由扫描仪和MRI数据发布的精细数字脑模型模型进行仿真,以确定系统在实际配置中的灵敏度。

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