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Radiofrequency Ablation of the Renal Tumors

机译:肾脏肿瘤的射频消融

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Radiofrequency ablation of the renal tumors considered the least invasive technique to get rid of malignancies cells. High-frequency waves in the range of 0.9 – 2.5 GHz were applied to the cancerous cells. Consequently, resistive heating was generated used to destroy the cancerous cells. In this paper, this technique had been applied to a 3D accurate model of the kidney with similar dimensions and shape including its artery, vein, and ureter. The next step was to design an RF probe to get high values of specific absorption rate for the cancerous cells and minimum values for the normal cells of the kidney. Simulation results showed that the shape of the model has the greatest effect on the resulting lesion volume and shape. In this work, the internally cooled electrode using Gil was designed from aluminum material with its tines revolved to 270° and Gaussian signal as the excitation signal.
机译:肾脏肿瘤的射频消融被认为是摆脱恶性肿瘤的最少侵袭性技术。 将0.9-2.5GHz范围内的高频波应用于癌细胞。 因此,产生电阻加热用于破坏癌细胞。 在本文中,该技术已被应用于肾脏的3D精确模型,其具有相似的尺寸和形状,包括其动脉,静脉和输尿管。 下一步是设计RF探针,以获得癌细胞的癌细胞的特定吸收率的高值和肾脏正常细胞的最小值。 仿真结果表明,该模型的形状对所得病变体积和形状具有最大的影响。 在这项工作中,使用GIL的内部冷却电极由铝材料设计,其尖端旋转到270°和高斯信号作为激励信号。

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