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Magnetic Resonance-compatible needle-like probe based on Bragg grating technology for measuring temperature during laser ablation.

机译:基于布拉格光栅技术的磁共振兼容针状探头,用于测量激光烧蚀期间的温度。

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Temperature monitoring in tissue undergone Laser Ablation (LA) may be particularly beneficial to optimize treatment outcome. Among many techniques, fiber Bragg grating (FBG) sensors show valuable characteristics for temperature monitoring in this medical scenario: good sensitivity and accuracy, and immunity from electromagnetic interferences. Their main drawback is the sensitivity to strain, which can entail measurement error for respiratory and patient movements. The aims of this work are the design, the manufacturing and the characterization of a needle-like probe which houses 4 FBGs. Three FBGs have sensitive length of 1 mm and are used as temperature sensors; one FBG with length of 10 mm is used as reference and to sense eventual strain. The optical fiber housing the FBGs was encapsulated within a needle routinely used in clinical practice to perform MRI-guided biopsy. Two materials were used for the encapsulation: i) thermal paste for the 3 FBGs used for temperature monitoring, to maximize the thermal exchange with the needle; ii) epoxy resin for the reference FBG, to improve its sensitivity to strain. The static calibration of the needle-like probe was performed to estimate the thermal sensitivity of each FBG; the step response was investigated to estimate the response time. FBGs 1 mm long have thermal sensitivity of 0.01 nm-°C-~1, whereas the reference FBG presents 0.02 nm.°C-1. For all FBGs, the response time was in the order of 100 ms. Lastly, experiments were performed on ex vivo swine liver undergoing LA to i) evaluate the possible presence of measurement artifact, due to the direct absorption of laser light by the needle and ii) assess the feasibility of the probe in a quasi clinical scenario.
机译:在组织中的温度监测经过激光烧蚀(LA)可能特别有益于优化治疗结果。在许多技术中,光纤布拉格光栅(FBG)传感器显示了这种医学情景中温度监测的有价值特性:良好的敏感性和准确性,以及电磁干扰的免疫力。它们的主要缺点是对菌株的敏感性,这可能需要呼吸和患者运动的测量误差。这项工作的目的是设计,制造和表征针状探头,其容纳4个FBG。三个FBG具有敏感长度为1毫米,用作温度传感器;使用长度为10毫米的FBG作为参考,并感知最终的应变。将FBG封装在临床实践中的针内封装光纤壳体封装在临床实践中以进行MRI引导的活组织检查。用于包封的两种材料:i)用于温度监测的3个FBG的热浆料,最大化与针的热交换; ii)用于参考FBG的环氧树脂,提高其对菌株的敏感性。进行针状探针的静态校准以估计每个FBG的热灵敏度;研究了阶段响应以估计响应时间。 FBGS 1毫米长的热敏灵敏度为0.01nm-°C-〜1,而参考FBG呈0.02nm。℃-1。对于所有FBG,响应时间为100 ms。最后,对伊达型猪猪肝肝脏进行实验)评估可能存在的测量伪影,由于针刺的激光直接吸收,II)评估探针在准临床情景中的可行性。

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