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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Fiber Optic Sensors-Based Thermal Analysis of Perfusion-Mediated Tissue Cooling in Liver Undergoing Laser Ablation
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Fiber Optic Sensors-Based Thermal Analysis of Perfusion-Mediated Tissue Cooling in Liver Undergoing Laser Ablation

机译:基于光学传感器的肝脏灌注介导组织冷却的热分析

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The current challenge in the field of thermo-ablative treatments of tumors is to achieve a balance between complete destruction of malignant cells and safeguarding of the surrounding healthy tissue. Blood perfusion plays a key role for thermal ablation success, especially in the case of highly vascularized organs like liver. This work aims at monitoring the temperature within perfused swine liver undergoing laser ablation (LA). Temperature was measured through seven arrays of Fiber Bragg Grating sensors (FBGs) around the laser applicator. To mimic reality, blood perfusion within the ex-vivo liver was simulated using artificial vessels. The influence of blood perfusion on LA was carried out by comparing the temperature profiles in two different spatial configurations of vessels and fibers. The proposed setup permitted to accurately measure the heat propagation in real-time with a temperature resolution of 0.1 degrees C and to observe a relevant tissue cooling near to the vessel up to 65%.
机译:目前在肿瘤的热烧蚀治疗领域的当前挑战是在完全破坏恶性细胞和保护周围健康组织之间进行平衡。血液灌注对热消融成功发挥着关键作用,特别是在高血管化器官等肝脏的情况下。这项工作旨在监测灌注的猪肝内的温度,接受激光烧蚀(La)。通过围绕激光涂敷器围绕七阵的纤维布拉格光栅传感器(FBG)测量温度。为了模仿现实,使用人工血管模拟前体内肝脏内的血液灌注。通过将温度曲线与血管和纤维的两种不同空间配置中的温度曲线进行比较来进行血液灌注对LA的影响。所提出的设置允许实时准确地测量热传播,温度分辨率为0.1℃,并观察靠近容器的相关组织冷却,高达65%。

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