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肾脏微波消融的影响。

Effects of microwave ablation of the kidney.

机构信息

Department of Urology, University of Miami-Miller School of Medicine, Miami, Florida 33136, USA.

出版信息

J Endourol. 2010 Mar;24(3):439-44. doi: 10.1089/end.2009.0204.

Abstract

INTRODUCTION

Thermal ablative therapy with cryotherapy and radiofrequency ablation is currently being utilized for treatment of small renal masses. Recently, microwave ablation (MWA) has been investigated for soft tissue destruction, with limited clinical experience for renal masses. This study was designed to evaluate the effectiveness of a new microwave system in the porcine kidney.

MATERIALS AND METHODS

MWAs were performed in vivo on six pigs using the Evident Microwave Ablation System (Valleylab, Boulder, CO) with a 3.7 cm active tip percutaneous antenna. Ablations were performed in both upper and lower poles at 45 W for 3, 5, and 10 minutes. Three pigs died; three pigs survived for 7 days. After necropsy the kidneys were harvested, ablation zones were measured, and histological analysis was performed.

RESULTS

The ablated zones at each time interval were inconsistent. The gross appearance of the lesions in both groups was similar. The antenna tract was charred, the collecting system was damaged, and there was asymmetry of the zones of ablation. Histological analysis revealed coagulative necrosis in the area of the ablation with sloughed and denuded urothelium.

CONCLUSION

MWA of the kidney utilizing this model yields inconsistent geometrical lesions when applied near the renal collecting system. Additionally, microwave energy may be preferentially absorbed by the increased water content in the collecting system resulting in damage to it. Further study is needed to assess the attenuation of the microwave field in the kidney at different locations due to the kidneys heterogeneity.

摘要

介绍

目前,冷冻疗法和射频消融的热消融疗法用于治疗小的肾肿瘤。最近,微波消融(MWA)已被用于软组织破坏的研究,在肾肿瘤方面的临床经验有限。本研究旨在评估一种新的微波系统在猪肾中的有效性。

材料和方法

使用 Evident Microwave Ablation System(Valleylab,Boulder,CO)对 6 头猪进行了体内 MWAs 治疗,采用 3.7cm 主动尖端经皮天线。在上下极分别以 45W 进行 3、5 和 10 分钟的消融。3 头猪死亡,3 头猪存活 7 天。解剖后取出肾脏,测量消融区,并进行组织学分析。

结果

每个时间间隔的消融区不一致。两组病变的大体外观相似。天线轨迹烧焦,收集系统受损,消融区不对称。组织学分析显示消融区有凝固性坏死,伴有脱落和裸露的尿路上皮。

结论

在靠近肾脏收集系统的情况下,使用该模型对肾脏进行 MWA 会产生不一致的几何消融区。此外,微波能量可能优先被收集系统中增加的含水量吸收,导致其受损。由于肾脏的异质性,需要进一步研究以评估不同部位微波场的衰减。

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