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Cryotherapy and radiofrequency ablation: pathophysiologic basis and laboratory studies.

机译:冷冻疗法和射频消融:病理生理基础和实验室研究。

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PURPOSE OF REVIEWThere is increasing interest in minimally invasive alternatives to surgery, especially as the natural history of small renal masses appears in the majority to be that of very slow growth. Cryoablation and radiofrequency ablation are two energy-based therapies that can be applied in a minimally invasive manner. We will review the recent clinical and laboratory studies that have formed the scientific foundation of the current clinical protocols and how these protocols may change in light of recent observations.RECENT FINDINGSAlthough there is literature supporting enhanced cell death with the use of a passive thaw in cryoablation, recent data suggest that the use of an active thaw is no different. The active thaw process will effectively cryoablate renal tissue as well as significantly reduce overall operative time. There is lack of uniformity in the effectiveness of radiofrequency ablation for renal masses. It has been concluded that hematoxylin and eosin staining is inadequate for assessment of cell viability after radiofrequency ablation and thus, nicotinamide adenine dinucleotide staining should be included in the histological assessment of tissue.SUMMARYCryoablation is the most studied modality and its ability to both directly and indirectly damage cells is generally understood. Clinical experience will further refine knowledge about optimal freezing temperature and freeze-thaw cycles. The coagulation necrosis of radiofrequency ablation is an effective means of destroying cancerous tissue but targeting this energy has been difficult and treatment failures have occurred.
机译:审查的目的人们对外科手术的微创替代方案的兴趣日益浓厚,特别是因为小肾脏肿块的自然病史在大多数情况下似乎是生长非常缓慢的病史。冷冻消融和射频消融是两种基于能量的疗法,可以以微创方式应用。我们将回顾构成当前临床方案科学基础的最新临床和实验室研究,以及根据最近的观察结果如何改变这些方案。近期发现尽管有文献支持在冷冻消融中使用被动解冻可增加细胞死亡,最近的数据表明主动融化的使用没有什么不同。主动解冻过程将有效地冷冻消融肾组织,并显着减少总体手术时间。射频消融对肾肿块的有效性缺乏统一性。已经得出结论,苏木精和曙红染色不足以评估射频消融后的细胞活力,因此,烟酰胺腺嘌呤二核苷酸染色应包括在组织的组织学评估中。损伤细胞是众所周知的。临床经验将进一步完善有关最佳冷冻温度和冻融循环的知识。射频消融的凝结坏死是破坏癌组织的有效手段,但是靶向这种能量一直很困难,并且治疗失败已经发生。

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