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Closed-Loop Temperature Control Based on Fiber Bragg Grating Sensors for Laser Ablation of Hepatic Tissue

机译:基于光纤布拉格光栅传感器的闭环温度控制用于肝脏组织的激光烧蚀

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摘要

Laser ablation (LA) of cancer is a minimally invasive technique based on targeted heat release. Controlling tissue temperature during LA is crucial to achieve the desired therapeutic effect in the organs while preserving the healthy tissue around. Here, we report the design and implementation of a real-time monitoring system performing closed-loop temperature control, based on fiber Bragg grating (FBG) spatial measurements. Highly dense FBG arrays (1.19 mm length, 0.01 mm edge-to-edge distance) were inscribed in polyimide-coated fibers using the femtosecond point-by-point writing technology to obtain the spatial resolution needed for accurate reconstruction of high-gradient temperature profiles during LA. The zone control strategy was implemented such that the temperature in the laser-irradiated area was maintained at specific set values (43 and 55 °C), in correspondence to specific radii (2 and 6 mm) of the targeted zone. The developed control system was assessed in terms of measured temperature maps during an ex vivo liver LA. Results suggest that the temperature-feedback system provides several advantages, including controlling the margins of the ablated zone and keeping the maximum temperature below the critical values. Our strategy and resulting analysis go beyond the state-of-the-art LA regulation techniques, encouraging further investigation in the identification of the optimal control-loop.
机译:癌症的激光消融(LA)是基于靶向热释放的微创技术。在La期间控制组织温度至关重要,以在保留周围的健康组织的同时在器官中达到所需的治疗效果。在这里,我们报告了执行闭环温度控制的实时监控系统的设计和实现,基于光纤布拉格光栅(FBG)空间测量。高度致密的FBG阵列(1.19毫米长度,0.01mm边缘到边距),使用飞秒逐个写入技术刻在聚酰亚胺涂层纤维中,以获得精确地重建高梯度温度型材所需的空间分辨率在洛杉矶。实施区域控制策略,使得激光辐照区域中的温度保持在特定的设定值(43和55℃),与目标区域的特定半径(2和6mm)保持在特定的设定值(43和55℃)。在离体肝脏La期间测量的温度图评估了开发的控制系统。结果表明,温度反馈系统提供了多种优点,包括控制消融区的边缘,并将最高温度保持在临界值以下。我们的策略和结果分析超出了最先进的LA调节技术,鼓励进一步调查最佳控制回路。

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