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Ablation of renal tumors in a rabbit model with interstitial saline-augmented radiofrequency energy: preliminary report of a new technology.

机译:间质性盐水增强射频能量消融兔模型中的肾肿瘤:一项新技术的初步报道。

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OBJECTIVES: To evaluate the efficacy of interstitial saline radiofrequency energy for reproducibly ablating nonmalignant (control) and malignant (the VX-2 tumor) renal tissue in a rabbit model, and to determine the ability of conventional gray-scale and power sonography to image the tumor and ablative process in real time before, during, and after treatment. METHODS: The VX-2 tumor was implanted beneath the renal capsule in 18 rabbit kidneys. Twelve days after implantation, 50 W of 500-kHz radiofrequency energy was delivered into the surgically externalized renal tumor and contralateral control kidney for 30 or 45-second treatment intervals using an interstitial saline-augmented radiofrequency probe (the virtual electrode). Localization of the tumor and response to treatment were imaged with gray-scale and power Doppler ultrasonography. The effect of radiofrequency and extent of the destructive process on benign and malignant renal tissue were evaluated histologically. RESULTS: Mean tumor size was 1.3 x 0.7 cm. Both 30 and 45-second treatment intervals provided marked tissue/tumor ablation. Gross anatomic and histologic analysis showed time-dependent ablated lesions averaging 1.4+/-0.3 x 1.0+/-0.3 cm (30-second treatment) and 1.8+/-0.4 x 1.5+/-0.3 cm (45-second treatment), with clear demarcation of the surrounding parenchyma. Conventional gray-scale sonography allowed visualization of the ablative process, and power Doppler ultrasound demonstrated changes in the vascular pattern of the tumor both before and after ablation. No immediate treatment-related complications were observed. CONCLUSIONS: These preliminary studies in a rabbit model demonstrate the feasibility of using the interstitial saline-augmented electrode to ablate small renal tumors and the ability to simultaneously visualize the ablative process using real-time ultrasonography. This technology may have the potential to treat small renal tumors in a minimally invasive manner in the clinical setting.
机译:目的:评估间质盐水射频能量可再生地消融兔模型中非恶性(对照)和恶性(VX-2肿瘤)肾组织的功效,并确定常规灰度和超声检查对肾脏成像的能力。在治疗前,治疗中和治疗后实时观察肿瘤和消融过程。方法:将VX-2肿瘤植入18只兔子肾脏的肾囊下方。植入后十二天,使用间质生理盐水增强射频探头(虚拟电极)将30 W(500 kHz)的500 kHz射频能量输送到手术外在的肾肿瘤和对侧对照肾中,间隔30或45秒。用灰度和功率多普勒超声对肿瘤的定位和对治疗的反应进行成像。组织学评估了射频和破坏过程对良性和恶性肾脏组织的影响。结果:平均肿瘤大小为1.3 x 0.7厘米。 30秒和45秒的治疗间隔均提供了明显的组织/肿瘤消融。大体解剖和组织学分析显示,时间依赖性消融病变平均为1.4 +/- 0.3 x 1.0 +/- 0.3 cm(30秒治疗)和1.8 +/- 0.4 x 1.5 +/- 0.3 cm(45秒治疗),与周围的薄壁组织清楚地划界。传统的灰度超声检查可以观察到消融过程,而功率多普勒超声显示消融前后肿瘤血管形态的变化。没有观察到与治疗相关的直接并发症。结论:在兔模型中的这些初步研究证明了使用间质生理盐水增强的电极消融小肾肿瘤的可行性以及使用实时超声检查同时可视化消融过程的能力。这项技术可能具有在临床环境中以微创方式治疗小的肾脏肿瘤的潜力。

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