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Evaluation of a Novel Thermal Accelerant for Augmentation of Microwave Energy during Image-guided Tumor Ablation

机译:新型热促进剂在图像引导肿瘤消融过程中增强微波能量的评估

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摘要

The primary challenge in thermal ablation of liver tumors (e.g. hepatocellular carcinoma and hepatic colorectal cancer) is the relatively high recurrence rate (~30%) for which incomplete ablation at the periphery of the tumor is the most common reason. In an attempt to overcome this, we have developed a novel thermal accelerant (TA) agent capable of augmenting microwave energy from a distance normally unattainable by a single microwave ablation antenna. This cesium-based block co-polymer compound transforms from a liquid to a gel at body temperature and is intrinsically visible by computed tomography. Using an agarose phantom model, herein we demonstrate that both the rate and magnitude of temperature increase during microwave ablation were significantly greater in the presence of TA when compared with controls. These results suggest robust augmentation of microwave energy, and may translate into larger ablation zone volumes within biologic tissues. Further work using in vivo techniques is necessary to confirm these findings.
机译:肝肿瘤热消融(例如肝细胞癌和肝结直肠癌)的主要挑战是相对较高的复发率(〜30%),这是肿瘤外围不完全消融的最常见原因。为了克服这一问题,我们开发了一种新型的热促进剂(TA),能够从单个微波消融天线通常无法达到的距离增加微波能量。这种铯基嵌段共聚物化合物在体温下从液体转变为凝胶,并且通过计算机断层扫描本质上可见。在本文中,我们使用琼脂糖体模模型证明,与对照组相比,在存在TA的情况下,微波消融过程中温度升高的速率和幅度都明显更大。这些结果表明微波能量的强劲增加,并可能转化为生物组织内更大的消融区体积。使用体内技术进行进一步的研究对于证实这些发现是必要的。

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