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In-fiber Bragg-grating temperature sensor system for medical applications

机译:用于医疗应用的光纤内布拉格光栅温度传感器系统

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摘要

A novel quasidistributed in-fiber Bragg grating (FBG) temperature sensor system has been developed for temperature proving in vivo in the human body for medical applications, e.g., hyperthermia treatment. This paper provides the operating principle of FBG temperature sensors and then the design of the sensor head. High-resolution detection of the wavelength-shifts induced by temperature changes are achieved using drift-compensated interferometric detection while the return signals from the FBG sensor array are demultiplexed with a simple monochromator which offers crosstalk-free wavelength-division-multiplexing (WDM). A "strain-free" probe is designed by enclosing the FBG sensor array in a protection sleeve. A four FBG sensor system is demonstrated and the experimental results are in good agreement with those obtained by traditional electrical thermocouple sensors. A resolution of 0.1/spl deg/C and an accuracy of /spl plusmn/0.2/spl deg/C over a temperature range of 30-60/spl deg/C have been achieved, which meet established medical requirements.
机译:已经开发了一种新颖的准分布的光纤布拉格光栅(FBG)温度传感器系统,用于人体在体内的温度证明以用于医疗应用,例如热疗。本文介绍了FBG温度传感器的工作原理,然后介绍了传感器头的设计。使用漂移补偿干涉测量可以实现对温度变化引起的波长偏移的高分辨率检测,而来自FBG传感器阵列的返回信号则通过简单的单色仪进行多路分解,该单色仪提供无串扰的波分复用(WDM)。通过将FBG传感器阵列封闭在保护套中来设计“无应变”探头。演示了四个FBG传感器系统,实验结果与传统电热电偶传感器获得的结果吻合良好。在30-60 / spl deg / C的温度范围内,已实现0.1 / spl deg / C的分辨率和/ spl plusmn / 0.2 / spl deg / C的精度,符合既定的医学要求。

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