首页> 外文期刊>Physics in medicine and biology. >Characterization of a digital microwave radiometry system for noninvasive thermometry using a temperature-controlled homogeneous test load.
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Characterization of a digital microwave radiometry system for noninvasive thermometry using a temperature-controlled homogeneous test load.

机译:使用温度控制的均匀测试负载对非侵入式测温的数字微波辐射测量系统进行表征。

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Microwave radiometry has been proposed as a viable noninvasive thermometry approach for monitoring subsurface tissue temperatures and potentially controlling power levels of multielement heat applicators during clinical hyperthermia treatments. With the evolution of technology, several analog microwave radiometry devices have been developed for biomedical applications. In this paper, we describe a digital microwave radiometer with built-in electronics for signal processing and automatic self-calibration. The performance of the radiometer with an Archimedean spiral receive antenna is evaluated over a bandwidth of 3.7-4.2 GHz in homogeneous and layered water test loads. Controlled laboratory experiments over the range of 30-50 degrees C characterize measurement accuracy, stability, repeatability and penetration depth sensitivity. The ability to sense load temperature through an intervening water coupling bolus of 6 mm thickness is also investigated. To assess the clinical utility and sensitivity to electromagnetic interference (EMI), experiments are conducted inside standard clinical hyperthermia treatment rooms with no EM shielding. The digital radiometer provided repeatable measurements with 0.075 degrees C resolution and standard deviation of 0.217 degrees C for homogeneous and layered tissue loads at temperatures between 32-45 degrees C. Within the 3.7-4.2 GHz band, EM noise rejection was good other than some interference from overhead fluorescent lights in the same room as the radiometer. The system response obtained for ideal water loads suggests that this digital radiometer should be useful for estimating subcutaneous tissue temperatures under a 6 mm waterbolus used during clinical hyperthermia treatments. The accuracy and stability data obtained in water test loads of several configurations support our expectation that single band radiometry should be sufficient for sub-surface temperature monitoring and power control of large multielement array superficial hyperthermia applicators.
机译:微波辐射测定法已被建议作为一种可行的非侵入式测温方法,用于监测地下组织温度并在临床热疗期间潜在地控制多元素热施加器的功率水平。随着技术的发展,已经为生物医学应用开发了几种模拟微波辐射测量设备。在本文中,我们描述了一种具有内置电子器件的数字微波辐射计,用于信号处理和自动自校准。在均匀和分层的水测试负载中,在3.7-4.2 GHz的带宽上评估了带有Archimedean螺旋接收天线的辐射计的性能。 30-50摄氏度范围内的受控实验室实验可表征测量精度,稳定性,可重复性和穿透深度灵敏度。还研究了通过插入的厚度为6 mm的水耦合推注来感应负载温度的能力。为了评估临床效用和对电磁干扰(EMI)的敏感性,在没有EM屏蔽的标准临床高温治疗室内进行了实验。数字辐射计提供了可重复测量的分辨率,分辨率为0.075摄氏度,标准偏差为0.217摄氏度,适用于32-45摄氏度之间的均匀和分层组织负载。在3.7-4.2 GHz频段内,EM噪声抑制性能良好,除了某些干扰在与辐射计相同的房间里从头顶上的荧光灯发出。针对理想水负载获得的系统响应表明,该数字辐射计应可用于估算在临床体温过高治疗期间使用的6毫米水剂量下的皮下组织温度。在几种配置的水测试负载中获得的精度和稳定性数据支持我们的期望,即单波段辐射测量应足以用于大型多元素阵列浅层热敷贴器的地下温度监测和功率控制。

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