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Optic fiber fluorescent thermometry for electromagnetic induced heating in medicine treatment

机译:用于电磁诱导的药物治疗中的光纤荧光温度

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Heating induced by electromagnetic field, such as radio-frequency (RF) and microwave is often used in medical application. MW or RF heating is used in hypothermia and hyperthermia treatments. Hypothermia is a clinical condition in which the internal body temperature is lowered below 35°C. RF heating (at 13.56 MHz or 27.13MHz) offers a fast, efficient and non-invasive method. Hyperthermia in cancer treatment involves heating of malignant tumors to 42.5-43 °C for a extended period in an attempt to obtain remission. MW(at 2450MHz) is potentially a useful method for heating deep localized tumors. A serious problem with this heating modality involves the accuracy of monitoring and controlling the tissue temperature in the presence of a strong EM field. Conventional thermal sensors such as thermocouples and thermistors are all based on a metallic active element which cannot function in a strong EM field environment. Optical fiber fluorescent thermometry is a better technique to show this problem. In this paper we quantify the factors determining the performance of this method, some practical considerations also be described
机译:由电磁场引起的加热,例如射频(RF)和微波通常用于医学应用。 MW或RF加热用于体温过低和热疗治疗。体温过低是一种临床状况,其中内体温度低于35℃。 RF加热(13.56 MHz或27.13MHz)提供快速,高效和无侵入的方法。癌症治疗中的热疗涉及将恶性肿瘤加热至42.5-43℃的延长期,以试图获得缓解。 MW(2450MHz)可能是加热深层局部肿瘤的有用方法。这种加热模式的严重问题涉及在强大的EM场存在下监测和控制组织温度的准确性。传统的热传感器,例如热电偶和热敏电阻是基于在强EM场环境中不能起作用的金属有源元件。光纤荧光温度测量是展示这个问题的更好技术。在本文中,我们量化了确定该方法性能的因素,还描述了一些实际考虑

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