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Real-time temperature monitoring and estimation of thermal damage in pancreas undergoing magnetic resonance-guided laser ablation: first in vivo study

机译:经磁共振引导激光烧蚀胰腺胰腺热损伤的实时温度监测和估算:第一in Vivo研究

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Thermal therapies are minimally invasive procedures used to locally remove tumor in several organs by means of cytotoxic temperature. Among several techniques, laser ablation (LA) is appreciated for the possibility to be performed by flexible optical fibers, hence to be coupled with MR imaging for procedure guidance. In this work, we present the first in vivo trial on pig pancreas undergoing LA and simultaneous multipoint temperature monitoring by means of fiber optic sensors (Fiber Bragg gratings -FBGs-). The clinical procedure has been performed through percutaneous access to the pancreas. The optical output of the FBGs, measuring both the temperature evolution and the breathing movement, is post-processed to neglect possible artifacts on the signal. Temperature data were also employed to estimate the thermal dose induced within the pancreas. The findings of this study may be useful for the definition of the safe LA to the patients, and allow understanding the effects of the laser light on the pancreatic tissue, paving the way for a controlled therapy in clinical settings.
机译:热疗法是通过细胞毒性温度在几种器官中局部去除肿瘤的微创手术。在若干技术中,为了通过柔性光纤执行的可能性,可以理解激光烧蚀(LA),因此与用于程序引导的MR成像耦合。在这项工作中,我们介绍了猪胰腺猪胰腺的第一个借助于光纤传感器(光纤布拉格光栅-FBGS-)的猪胰腺和同时多点温度监测。临床程序已经通过经皮进入胰腺来进行。 FBG的光输出,测量温度演化和呼吸运动,被后处理以忽略信号上的可能伪像。还采用温度数据来估计胰腺诱导的热量。该研究的发现可能对患者的安全La的定义有用,并允许了解激光对胰腺组织上的影响,为临床环境中的受控疗法铺平道路。

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