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The signal processing based on average and curve fit technique for optic-fiber fluorescent temperature measurement system in hyperthermia clinical

机译:基于均值和曲线拟合技术的热疗光纤荧光温度测量系统信号处理

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In thyperthermia, the temperature of tumor is induced by radio frequency or microwave to raising to 42.5∼43°C for a extended period 20∼60 minute. The temperature controlled lever is critical. The error of temperature measurement must less than 0.5% In this case a serious problem with this heating modality involves the accuracy and controlling the tissue temperature in the presence of strong EM field. Conventional thermal sensors such as thermocouple and thermistor are all based on a metallic active element which can not function in a strong EM field environment. In this paper a project of optical fiber fluorescent thermometer featuring in it''s small diameter sensor probe for measuring the temperature of tissue while heating the tumor by electromagnetic field is based on the average and curve fit technique. It significantly promotes the signal to noise ratio for achieving a resolution of 0.2°C in hyperthermia clinical. In this paper, the processing methods will be described in detail.
机译:在Thypermethia中,肿瘤的温度由射频或微波诱导,以延长20〜60分钟的42.5〜43℃。温控杆至关重要。在这种情况下,温度测量的误差必须小于0.5%,这种加热模板的严重问题涉及精度和控制强EM场的组织温度。诸如热电偶和热敏电阻之类的传统热传感器全部基于金属有源元件,其无法在强EM场环境中起作用。在本文中,光纤荧光温度计的项目,其小直径传感器探针,用于通过电磁场加热肿瘤的同时测量组织的温度。基于平均和曲线拟合技术。它显着促进了在热疗临床中实现0.2℃分辨率的信噪比。在本文中,将详细描述处理方法。

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