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活体组织中的微波辐射测量:它测量的是什么?

Microwave radiometry in living tissue: what does it measure?

作者信息

Cheever E A, Foster K R

机构信息

Department of Engineering, Swarthmore College, PA 19081.

出版信息

IEEE Trans Biomed Eng. 1992 Jun;39(6):563-8. doi: 10.1109/10.141194.

Abstract

The sensitivity of microwave radiometry for detecting subcutaneous targets was studied both experimentally and theoretically. The radiometer used a dielectric loaded rectangular waveguide antenna in contact with a lossy dielectric medium. A cylindrical target with dielectric properties and/or temperature different from that of the surrounding medium was located beneath this surface. For most of the studies, the target and the surrounding medium were maintained at constant, but unequal, temperatures (i.e., heat conduction effects were insignificant). The received radiometric signal was calculated as the location and dielectric properties of the target were varied. Finally, the radiometer signal was calculated for the situation with the target maintained at constant temperature but with the surrounding medium modeled by the bioheat equation. Experimental studies were performed using a radiometer operating at 4.7 GHz. The target was a thin walled tube through which a temperature controlled liquid was circulated, located in a temperature controlled fluid tank. The results indicate that microwave radiometry (as used in this study) responds to the temperature averaged over the field pattern of the antenna with very strong weighting of regions near the surface. A simple quasi-static analysis provides a good indication of the sensitivity of the technique for detecting cylindrical targets whose dielectric properties are different from those of the surrounding medium. A simple estimate of thermal conduction around the target suggest that thermal effects greatly increase the apparent size of the target.

摘要

对微波辐射测量法检测皮下目标的灵敏度进行了实验和理论研究。该辐射计使用了一个加载电介质的矩形波导天线,与有损耗的电介质介质接触。一个具有与周围介质不同的介电特性和/或温度的圆柱形目标位于该表面下方。在大多数研究中,目标和周围介质保持在恒定但不相等的温度下(即热传导效应不显著)。随着目标的位置和介电特性的变化,计算接收到的辐射信号。最后,针对目标保持恒温但周围介质由生物热方程建模的情况计算辐射计信号。使用工作在4.7GHz的辐射计进行了实验研究。目标是一个薄壁管,通过它循环有温度控制的液体,该薄壁管位于一个温度控制的流体罐中。结果表明,微波辐射测量法(本研究中使用的)对天线场模式上平均的温度做出响应,对表面附近区域有非常强的加权。一个简单的准静态分析很好地表明了该技术检测介电特性与周围介质不同的圆柱形目标的灵敏度。对目标周围热传导的简单估计表明,热效应大大增加了目标的表观尺寸。

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