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Fiber Optic Sensors for Temperature Monitoring during Thermal Treatments: An Overview

机译:用于热处理过程中温度监控的光纤传感器:概述

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摘要

During recent decades, minimally invasive thermal treatments (i.e., Radiofrequency ablation, Laser ablation, Microwave ablation, High Intensity Focused Ultrasound ablation, and Cryo-ablation) have gained widespread recognition in the field of tumor removal. These techniques induce a localized temperature increase or decrease to remove the tumor while the surrounding healthy tissue remains intact. An accurate measurement of tissue temperature may be particularly beneficial to improve treatment outcomes, because it can be used as a clear end-point to achieve complete tumor ablation and minimize recurrence. Among the several thermometric techniques used in this field, fiber optic sensors (FOSs) have several attractive features: high flexibility and small size of both sensor and cabling, allowing insertion of FOSs within deep-seated tissue; metrological characteristics, such as accuracy (better than 1 °C), sensitivity (e.g., 10 pm·°C−1 for Fiber Bragg Gratings), and frequency response (hundreds of kHz), are adequate for this application; immunity to electromagnetic interference allows the use of FOSs during Magnetic Resonance- or Computed Tomography-guided thermal procedures. In this review the current status of the most used FOSs for temperature monitoring during thermal procedure (e.g., fiber Bragg Grating sensors; fluoroptic sensors) is presented, with emphasis placed on their working principles and metrological characteristics. The essential physics of the common ablation techniques are included to explain the advantages of using FOSs during these procedures.
机译:在最近的几十年中,微创热处理(即射频消融,激光消融,微波消融,高强度聚焦超声消融和冷冻消融)在肿瘤切除领域得到了广泛认可。这些技术可引起局部温度升高或降低,从而去除肿瘤,而周围的健康组织仍保持完整。准确测量组织温度可能特别有利于改善治疗效果,因为它可以用作实现完整肿瘤消融并将复发最小化的明确终点。在该领域使用的几种测温技术中,光纤传感器(FOS)具有几个吸引人的特征:传感器和电缆的高度灵活性和小尺寸,允许将FOS插入深层组织内;计量特性(例如精度(低于1°C),灵敏度(例如,对于光纤布拉格光栅为10 pm·°C -1 )和频率响应(几百kHz))足以满足要求这个应用程序;抗电磁干扰能力允许在磁共振或计算机断层扫描引导的热疗过程中使用FOS。在这篇综述中,介绍了用于热过程中温度监控的最常用的FOS的当前状态(例如光纤布拉格光栅传感器;荧光传感器),重点介绍了它们的工作原理和计量特性。包括了普通消融技术的基本物理原理,以解释在这些过程中使用FOS的优势。

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