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Error of a Temperature Probe for Cancer Ablation Monitoring Caused by Respiratory Movements: Ex Vivo and In Vivo Analysis

机译:用于呼吸运动引起的癌症消融监测的温度探针的误差:体内和体内分析

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Hyperthermal techniques are spreading as an alternative to conventional surgery for cancer removal. A real-time temperature feedback can be used to adjust the treatment settings, in order to improve the clinical outcomes. In this paper, we experimentally assessed the feasibility for distributed temperature monitoring of a custom probe, which consists of a needle embedding six fiber Bragg gratings (FBGs). Since FBGs are also sensitive to strain, we focused on the analysis of the measurement error (artifact) caused by respiratory movements. We assessed the artifact both on ex vivo pig liver and lung (by mimicking the movement of these organs caused by respiration) and on in vivo trial on pig liver. Lastly, we proposed an algorithm to detect and minimize the artifact during ex vivo liver laser ablation. During both ex vivo and in vivo trials, the probe insertion within the organ was easy and safe. The artifact was significant (up to 3 °C), but the correction algorithm allows minimizing the error. The main advantages of the proposed probe are: 1) spatially resolved temperature monitoring (in six points of the tissue by inserting a single needle) and 2) the needle is magnetic resonance (MR)-compatible, hence can be used during MR-guided procedure. Even if the model is close to humans, further trials are required to investigate the feasibility of the probe for clinical applications.
机译:高温技术正在普及,以替代传统的癌症切除术。实时温度反馈可用于调整治疗设置,以改善临床效果。在本文中,我们通过实验评估了定制探针的分布式温度监控的可行性,该探针由嵌入六个光纤布拉格光栅(FBG)的针组成。由于FBG对应变也很敏感,因此我们专注于分析由呼吸运动引起的测量误差(伪影)。我们评估了离体猪肝脏和肺(通过模拟呼吸引起的这些器官的运动)和猪肝的体内试验中的伪影。最后,我们提出了一种在离体肝激光消融过程中检测并最小化伪影的算法。在离体和体内试验期间,探针在器官内的插入既简单又安全。伪影很明显(最高3°C),但是校正算法可以使误差最小。所提出的探头的主要优点是:1)空间分辨温度监测(通过插入单个针头在组织的六个点上),以及2)针头是磁共振(MR)兼容的,因此可以在MR引导下使用程序。即使该模型与人类接近,也需要进一步的试验来研究该探针在临床上的可行性。

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