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A Novel Thermal Accelerant (TA) For Augmentation Of Microwave Energy During Image-guided Tumor Ablation

机译:一种新型热促进剂(TA),用于在图像引导肿瘤消融期间增加微波能量

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The greatest challenge in image-guided thermal ablation (IGTA) of liver tumors is a relatively high recurrence rate (ca. 30%) due to incomplete ablation. To meet this challenge, we have developed a novel Thermal Accelerator (TA) to demonstrate its capability to, 1) augment microwave (MW) energy from a distance unattainable by antenna alone; 2) turn into a gel at body temperature; 3) act as a CT or US contrast. We have examined the TA efficiency using in vitro and ex vivo models: microwave power, TA dose, frequencies and TA-to-tip distance were varied, and temperature readings compared with and without TA. Using the in vitro model, it was established that both the rate and magnitude of increase in ablation zone temperature were significantly greater with TA under all tested conditions (p<0.0001). On ultrasound imaging, the TA was echogenic as gel. On CT, TA density was proportional to dose, with average values ranging from 329 HU to 3071 HU at 10 mg/mL and l,000mg/mL, respectively. TA can be accurately deposited to a target area using CT or US as image-guidance and augment MW energy effectively so that ablation time is significantly reduced, which will contribute to complete ablation. The preliminary results obtained from in vivo experiments using swine as an animal model are consistent with the observations made in in vitro and en vivo studies.
机译:由于不完全消融,肝脏肿瘤的图像引导热烧蚀(IGTA)的最大挑战是一种相对高的复发率(约30%)。为了满足这一挑战,我们开发了一种新的热加速器(TA),以证明其能力,1)通过单独的天线无法实现的距离增强微波(MW)能量; 2)在体温下变成凝胶; 3)作为CT或美国对比。我们已经使用体外和前体内型号进行了对TA效率:微波功率,TA剂量,频率和TA-to-tip距离有变化,而温度读数与且没有TA。使用体外模型,确定消融区温度的速率和幅度随着所有测试条件下的TA明显大于(P <0.0001)。在超声成像上,TA被升高为凝胶。在CT上,TA密度与剂量成比例,平均值在329u至3071u,分别为10mg / ml,L,000mg / ml。可以使用CT或US精确地将TA准确地沉积到目标区域,作为图像引导,从而有效地增强MW能量,以便消融时间显着降低,这将有助于完全消融。作为动物模型的使用猪的体内实验获得的初步结果与体外和体内研究中的观察结果一致。

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