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Enhancing the focusing properties of an ellipsoidal beamformer based imaging system: a simulation study

机译:增强基于椭圆波束形成器的成像系统的聚焦特性:仿真研究

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Aim of this study is the improvement of the focusing properties of a microwave radiometry tomography system, used for the imaging of the product of temperature and conductivity in biological tissues via contactless measurements. The operation principle of the device in question is based on an ellipsoidal conductive wall cavity, which provides the required beamforming and focusing. The biological tissue under measurement is placed on one of the two focal points whereas on the other one, a dipole antenna measures the black body type radiation emitted from the head''s tissue. In the framework of the present research several approaches are followed in order to improve and optimize the system''s focusing properties on the tissue area of interest. Extensive simulations using a commercial FEM tool are performed in a wide range of operation frequencies. Dielectric spheres of various electromagnetic characteristics are placed either around the source (human head model) or the receiver (dipole antenna) in order to improve the matching on the head-air interface. The ability of focusing the electromagnetic energy in specific areas inside the human head is herein investigated in detail and further discussed
机译:这项研究的目的是改进微波辐射层析成像系统的聚焦性能,该系统用于通过非接触式测量对生物组织中的温度和电导率产物进行成像。所讨论的设备的工作原理基于椭圆形的导电壁腔,该腔体提供了所需的波束形成和聚焦。被测生物组织放置在两个焦点之一上,而另一个焦点上,偶极天线测量从头部组织发出的黑体辐射。在本研究的框架内,采用了几种方法来改善和优化系统对目标组织区域的聚焦特性。使用商用FEM工具进行的广泛仿真是在很宽的工作频率范围内进行的。在源(人头模型)或接收器(偶极天线)周围放置各种电磁特性的介电球,以改善头空接口的匹配性。本文详细研究并进一步讨论了将电磁能集中在人头部内部特定区域的能力。

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