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Microwave Ablation Using Four-Tine Antenna: Effects of Blood Flow Velocity, Vessel Location, and Total Displacement on Porous Hepatic Cancer Tissue

机译:使用四叉天线的微波消融:血流速度,血管位置和多孔肝癌组织的总位移的影响

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摘要

This research is concerned with microwave ablation analyses using a 2.45 GHz four-tine (4T) antenna for hepatic cancer tissue. In the study, three-dimensional finite-element models were utilized to examine the tissue temperature distributions during and after MW ablation. A preliminary study was first carried out with regard to the specific absorption rates along the 4T antenna insertion depths and the temperature distributions inside the solid and porous liver models with either 3 cm-in-diameter tumor or 5 cm-in-diameter tumor. Based on the preliminary results, the porous models were further examined for the effect of varying blood flow velocities (0–200 cm/s) with a 1 cm-in-diameter blood vessel next to the antenna and also for the effect of vessel-antenna locations (0, 0.8, and 1.3 cm) with a constant blood flow velocity of 16.7 cm/s. All scenarios were simulated under temperature-controlled mode (90°C). The findings revealed that the blood flow velocity and vessel location influence the ablation effectiveness and that increased blood flow inhibits heat transfer to the vessel wall. At the nearest and farthest vessel-antenna locations (0 and 1.3 cm), approximately 90.3% and 99.55% of the cancer cells were eradicated except for the areas adjacent to the vessel. In addition, total tissue thermal displacement is 5.9 mm which is 6.59% of the total length of the overall model.
机译:该研究涉及使用2.45GHz四叉(4T)天线进行肝癌组织的微波消融分析。在该研究中,利用三维有限元模型来检查MW消融期间和之后的组织温度分布。首先在沿着4T天线插入深度的特定吸收速率和固体肝模型内的温度分布的特定吸收率进行初步研究,其具有3cm-in-in-in-in-um-in-um-ud-in-um-in-um-in-um-in-um-in-tumor。基于初步结果,进一步检查多孔模型,用于改变血流速度(0-200cm / s)与天线旁边的1厘米直径的血管的影响,以及血管的效果 - 天线位置(0,0.8和1.3厘米),恒定的血流速度为16.7cm / s。在温度控制模式(90°C)下模拟所有情况。结果表明,血流速度和血管位置影响消融效果,并且增加的血液流量抑制了血管壁的热传递。在最近和最远的船舶 - 天线位置(0和1.3cm),除了与血管相邻的区域之外,癌细胞的约90.3%和99.55%。此外,总组织热位移为5.9毫米,占整个模型总长度的6.59%。

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