首页> 外文期刊>The Journal of Urology >Development of a radiofrequency based thermal therapy technique in an in vivo porcine model for the treatment of small renal masses.
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Development of a radiofrequency based thermal therapy technique in an in vivo porcine model for the treatment of small renal masses.

机译:在体内猪模型中基于射频的热疗法技术的发展,用于治疗小肾脏肿块。

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PURPOSE: Incidentally detected small renal tumors appear to grow slowly and be localized to the kidney. Minimally invasive therapies are being investigated as alternatives to standard surgical techniques. Radiofrequency ablation has been reported for the treatment of small renal cell carcinomas. We developed a radiofrequency technique and established its efficacy and safety in a large animal model. METHODS AND METHODS: A total of 22 lesions were created in normal kidneys of 7 pigs. Radiofrequency energy was administered during open exposure of the kidneys or percutaneously under ultrasound guidance. Lesion development was monitored with gray-scale and power Doppler ultrasound. To avoid heating surrounding tissues new hydro-dissection and gas-dissection techniques were developed. Lesion sizes and characteristics were assessed by ultrasound and pathological examination. RESULTS: No complications were observed due to probe insertion and removal. Perirenal structures were thermally damaged before the development and application of the dissection techniques. Lesion size was accurately predicted by gray-scale ultrasound on day 7. Loss of perfusion in the ablated volume was confirmed by power Doppler ultrasound. Lesions were wedge-shaped, presumably due to the effects of heating on segmental blood flow distribution. Pathological examination revealed changes consistent with thermal injury and ischemic type infarction. CONCLUSIONS: Radiofrequency thermal therapy is an effective and efficient method for ablating normal renal tissue in the pig. It may be applied percutaneously under ultrasound guidance with minimal complications provided that vital adjacent structures are protected from thermal damage. Further studies are required in humans before adopting this technique as definitive treatment for small renal cell carcinoma.
机译:目的:偶然发现的小肾脏肿瘤似乎生长缓慢并且位于肾脏。目前正在研究微创疗法作为标准手术技术的替代方法。射频消融治疗小肾细胞癌的报道。我们开发了一种射频技术,并在大型动物模型中确立了其功效和安全性。方法和方法:在7头猪的正常肾脏中共产生22个病变。在肾脏裸露暴露期间或在超声引导下经皮给予射频能量。用灰度和功率多普勒超声监测病变的发展。为了避免加热周围组织,开发了新的水力解剖和气体解剖技术。通过超声和​​病理检查评估病变的大小和特征。结果:未观察到由于插入和拔出探针而引起的并发症。在解剖技术的发展和应用之前,沿周结构被热损伤。在第7天,通过灰度超声准确地预测了病变的大小。通过功率多普勒超声证实了消融体积的灌注损失。病变是楔形的,大概是由于加热对节段血流分布的影响。病理检查发现与热损伤和缺血性梗死一致的变化。结论:射频热疗是消融猪正常肾脏组织的有效方法。只要能保护重要的相邻结构免受热损害,它就可以在超声引导下经皮应用,且并发症最少。在采用这种技术作为小规模肾细胞癌的确定性治疗方法之前,需要对人类进行进一步的研究。

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