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在猪肿瘤模型中进行肺微波消融的体内评估。

In vivo evaluation of lung microwave ablation in a porcine tumor mimic model.

机构信息

Service Radiologie Cardiovasculaire et Interventionnelle, Centre Chirurgical Marie Lannelongue, 133 Avenue de la Résistance, 92350, Le Plessis Robinson, France.

出版信息

Cardiovasc Intervent Radiol. 2013 Feb;36(1):221-8. doi: 10.1007/s00270-012-0399-8. Epub 2012 May 3.

Abstract

PURPOSE

To evaluate the microwave ablation of created tumor mimics in the lung of a large animal model (pigs), with examination of the ablative synergy of multiple antennas.

METHODS

Fifty-six tumor-mimic models of various sizes were created in 15 pigs by using barium-enriched minced collected thigh muscle injected into the lung of the same animal. Tumors were ablated under fluoroscopic guidance by single-antenna and multiple-antenna microwaves.

RESULTS

Thirty-five tumor models were treated in 11 pigs with a single antenna at 75 W for 15 min, with 15 measuring 20 mm in diameter, 10 measuring 30 mm, and 10 measuring 40 mm. Mean circularity of the single-antenna ablation zones measured 0.64 ± 0.12, with a diameter of 35.7 ± 8.7 mm along the axis of the antenna and 32.7 ± 12.8 mm perpendicular to the feeding point. Multiple-antenna delivery of 75 W for 15 min caused intraprocedural death of 2 animals; modified protocol to 60 W for 10 min resulted in an ablation zone with a diameter of 43.0 ± 7.7 along the axis of the antenna and 54.8 ± 8.5 mm perpendicular to the feeding point; circularity was 0.70 ± 0.10

CONCLUSIONS

A single microwave antenna can create ablation zones large enough to cover lung tumor mimic models of ≤4 cm with no heat sink effect from vessels of ≤6 mm. Synergic use of 3 antennas allows ablation of larger volumes than single-antenna or radiofrequency ablation, but great caution must be taken when 3 antennas are used simultaneously in the lung in clinical practice.

摘要

目的

评估在大型动物模型(猪)肺部创建的肿瘤模拟物的微波消融效果,检查多个天线的消融协同作用。

方法

通过向同一只动物的肺部注射富含钡的切碎收集的大腿肌肉,在 15 只猪中创建了 56 个不同大小的肿瘤模拟物模型。在透视引导下,使用单天线和多天线微波进行消融。

结果

在 11 只猪中使用单天线以 75 W 治疗 35 个肿瘤模型 15 分钟,其中 15 个模型直径为 20 毫米,10 个模型直径为 30 毫米,10 个模型直径为 40 毫米。单天线消融区域的平均圆度为 0.64±0.12,沿天线轴的直径为 35.7±8.7 毫米,垂直于馈电点的直径为 32.7±12.8 毫米。75 W 多天线输送 15 分钟导致 2 只动物在手术过程中死亡;将方案修改为 60 W 输送 10 分钟,导致沿天线轴的消融区域直径为 43.0±7.7 毫米,垂直于馈电点的直径为 54.8±8.5 毫米;圆度为 0.70±0.10。

结论

单个微波天线可以创建足够大的消融区域,以覆盖直径≤4 cm 的肺肿瘤模拟物模型,而≤6 mm 的血管不会产生热沉效应。3 个天线的协同使用允许消融比单天线或射频消融更大的体积,但在临床实践中,当 3 个天线同时在肺部使用时,必须非常小心。

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