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Toward the development of a distributed all-fiber temperature sensor for biomedical applications

机译:朝向生物医学应用的分布式全纤维温度传感器的开发

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A Chirped Fiber Bragg Grating is investigated as distributed temperature sensor for medical applications such as laser ablation. The motivation for this research and a brief comparison of this sensor with more established temperature monitoring techniques are analyzed. A numerical model based on equivalent electrical transmission lines is developed to predict the sensor behavior to thermal stimuli. The simulation are then experimentally verified by comparison with measurements performed on a commercial 4.5 cm long Chirped Fiber Bragg Grating mounted on a thermal cooler and interrogated in reflection. The experimental results, resembling the simulations, show that the reflection spectrum changes according to the thermal profile applied along the grating with a coefficient of 8 pm/°C. These preliminary results are promising since they prove that the Chirped Fiber Bragg Grating can be employed as distributed temperature sensor in a range of few centimeters, as it is required by thermo-related therapies.
机译:啁啾光纤布拉格光栅被研究为用于医疗应用的分布式温度传感器,如激光烧蚀。分析了该研究的动机和具有更多既定温度监测技术的该传感器的简要比较。开发了一种基于等效电传输线的数值模型来预测热刺激的传感器行为。然后通过与在热冷却器上安装在热冷却器上的商业4.5cm长啁啾光纤布拉格光栅并在反射中进行询问的测量来进行模拟进行实验验证。类似于模拟的实验结果表明,反射光谱根据沿光栅施加的热轮廓而改变,其系数为8pm /℃。这些初步结果是有前途的,因为它们证明了啁啾光纤布拉格光栅可以用作分布式温度传感器,在几厘米的范围内,因为热与热处理需要。

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