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Haemostatic partial nephrectomy using bipolar radiofrequency ablation.

机译:使用双极射频消融止血部分肾切除术。

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OBJECTIVE: To determine whether an electrode array with a bipolar radiofrequency ablation (RFA) energy source can be used to perform a haemostatic partial nephrectomy by simultaneously ablating and coagulating renal tissue. MATERIALS AND METHODS: Lower-pole partial nephrectomy was performed in 12 porcine kidneys using a bipolar RFA system. Intraoperative ultrasonography was used to identify and avoid the collecting system. Tissues were positioned between opposing electrodes and tissue impedance monitored using a proprietary feedback and control algorithm. Ablation time and power, lesion width and length, and tissue thickness were recorded. The kidneys were assessed in vivo to show haemostasis of the remaining renal unit. Collecting system integrity was assessed with methylene blue injection, and the resected tissue analysed histologically. RESULTS: Partial nephrectomies were successful in all 12 porcine kidneys; the mean nephrectomy specimen was 3.2 x 2.6 cm. The total ablation time (sem) per lesion was 211 (15) s and the mean power was 23 W. Methylene blue injection showed an intact collecting system in 11 of the 12 kidneys, and haematoxylin and eosin staining showed a mean zone of necrosis of 9 mm at the resection margin. Ultrasonography revealed flow to the remaining kidneys after RFA and the in vivo assessment of haemostasis revealed no abnormal bleeding or haemorrhage from the kidneys. CONCLUSIONS: Applying bipolar RF energy to an electrode array can enable transmural excision of renal parenchyma in vivo in a bloodless fashion without collecting system injury.
机译:目的:确定具有双极射频消融(RFA)能量源的电极阵列是否可用于同时消融和凝结肾脏组织的止血部分肾切除术。材料与方法:采用双极RFA系统在12头猪肾脏中进行了下极部分肾切除术。术中超声被用来识别和避免收集系统。将组织放置在相对电极之间,并使用专有的反馈和控制算法监控组织阻抗。记录消融时间和功率,病变宽度和长度以及组织厚度。在体内对肾脏进行评估,以显示剩余肾单位的止血作用。用亚甲蓝注射液评估收集系统的完整性,并对切除的组织进行组织学分析。结果:在所有12只猪肾脏中,部分肾切除均成功。平均肾脏切除标本为3.2 x 2.6 cm。每个病变的总消融时间(sem)为211(15)s,平均功率为23W。亚甲基蓝注射液显示12个肾脏中有11个肾脏的采集系统完整,苏木精和曙红染色显示平均坏死区域为切除边缘处9毫米。超声检查显示射频消融后流向其余肾脏,体内止血评估显示肾脏无异常出血或出血。结论:将双极射频能量应用于电极阵列可以在不增加系统损伤的情况下以无血的方式体内穿刺切除肾实质。

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