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高频率微波消融在存在灌注情况下的性能。

The Performance of Higher Frequency Microwave Ablation in the Presence of Perfusion.

出版信息

IEEE Trans Biomed Eng. 2019 Jan;66(1):257-262. doi: 10.1109/TBME.2018.2836317. Epub 2018 May 14.

Abstract

OBJECTIVE

In this paper, we investigate the impact of perfusion on the performance of microwave ablation across a large frequency range.

METHODS

We designed multiple microwave ablation antennas to operate in liver tissue at discrete frequencies in the range 1.9-18 GHz. We performed electromagnetic simulations to calculate microwave power absorption patterns. Five-minute, 25 W ablation experiments were performed at each frequency in perfused and nonperfused ex vivo porcine livers, and thermal lesion dimensions were measured.

RESULTS

The volume of greatest microwave power absorption shrinks by two orders of magnitude as the frequency is increased from 1.9 to 18 GHz. Mean thermal lesion volumes are consistent across the frequency range for a given perfusion state and are about three times smaller under active perfusion. Typical thermal lesion diameters (perpendicular to the antenna axis) were 24 mm and 16 mm for nonperfused and perfused ablations, respectively. No significant differences in axial ratio were observed among different frequency groups in active-perfusion experiments.

CONCLUSION

Higher-frequency microwave ablation produces thermal lesions with volumes comparable to those achieved at lower frequencies, even in strongly perfused environments.

SIGNIFICANCE

Higher-frequency microwave ablation is appealing because it allows for more flexibility in antenna design. A critical issue concerning the feasibility of higher frequency microwave ablation, considering its strong dependence on heat diffusion to grow thermal lesions, is its performance in strongly perfused environments. This paper shows that higher frequency microwave ablation achieves thermal lesions comparable to those from microwave ablation performed at conventional frequencies in both non- and strongly perfused environments.

摘要

目的

在本文中,我们研究了灌注在宽频率范围内对微波消融性能的影响。

方法

我们设计了多个微波消融天线,在 1.9-18GHz 的离散频率下在肝组织中运行。我们进行了电磁模拟计算来计算微波功率吸收模式。在灌注和非灌注的离体猪肝中,在每个频率下进行 5 分钟、25W 的消融实验,并测量热损伤尺寸。

结果

随着频率从 1.9GHz 增加到 18GHz,最大微波功率吸收的体积缩小了两个数量级。在给定的灌注状态下,平均热损伤体积在整个频率范围内是一致的,而在主动灌注下则小约三倍。在非灌注和灌注消融中,典型的热损伤直径(垂直于天线轴)分别为 24mm 和 16mm。在主动灌注实验中,不同频率组之间的轴向比没有观察到显著差异。

结论

高频微波消融产生的热损伤体积与低频时相当,即使在灌注较强的环境中也是如此。

意义

高频微波消融因其天线设计更具灵活性而具有吸引力。考虑到热扩散对热损伤生长的强烈依赖性,高频微波消融的可行性的一个关键问题是其在灌注较强的环境中的性能。本文表明,在非灌注和强烈灌注环境中,高频微波消融都能达到与传统频率微波消融相当的热损伤。

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