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Near-field microwave radiometric temperature monitoring of heated and cooled living tissues

机译:近场微波辐射测温温度监测加热和冷却的活组织

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Using the dependence of the shaping depth of the received thermal radio emission on the apertures of small contact probes used as antennas in microwave radiometers, the temperature profile dynamics in subcutaneous human tissues subjected to heating and cooling have been retrieved according to the measured dynamics of the received signal. For the experiment, a human hand was heated (or cooled) in water, and temperature variations in hot (or cold) water with subsequent relaxation in air were measured using contact antennas with sizes of 0.5, 1, 2, and 3 cm and a radiometer at 31 cm wavelength. Antennas were matched both to water and living tissues. Similar radiometric measurements in air and the recovery of the temperature relaxation processes in the human body following a 100-second heating are presented. The results show that relaxation processes in the near-surface layer commence immediately, while with deeper layers, the heating still continues for some time. The developed single-wave technique of subcutaneous temperature profile recovery might prove efficient for medical applications in monitoring internal body temperatures during microwave hyperthermia treatment.
机译:利用所接收的热量无线电发射的成形深度在微波辐射素中用作天线的小触点探针的孔中,根据测量的动态检索了经受加热和冷却的皮下人体组织中的温度曲线动态。接收信号。对于该实验,人的手被加热(或冷却)的水,并用接触天线具有0.5的尺寸,1,2,和3厘米,测定与在空气中随后的松弛热(或冷)的水的温度变化辐射计31厘米波段。天线与水和活组织匹配。呈现了在100秒加热之后的空气中的相似辐射测量和在人体中的温度弛豫过程的回收率。结果表明,近表面层的弛豫过程立即开始,同时具有更深层,加热仍在持续一段时间。发育的皮下温度曲线恢复的单波技术可能证明在微波热疗治疗期间监测内部体温下的医学应用有效。

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