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Feasibility of laparoscopic renal cooling with near-freezing saline irrigation delivered with a standard irrigator aspirator.

机译:使用标准冲洗器抽吸器进行腹腔镜肾冷却和近冷冻盐水冲洗的可行性。

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OBJECTIVES: To determine the feasibility of laparoscopic renal cooling with near-freezing saline irrigation in the porcine model delivered using readily available operating room equipment. METHODS: Five pigs underwent laparoscopic renal surgery with temperature sensors placed in the medulla and upper, middle, and lower pole renal cortex. After complete occlusion of the renal artery and vein, near-freezing saline was delivered with a standard irrigator/aspirator onto the renal surface. The run-off was simultaneously suctioned as it pooled in the hilum with a second aspirator. The kidney and body temperatures were monitored throughout the 1-hour ischemic period and for 10 minutes after unclamping the hilum. RESULTS: Continuous irrigation of the kidney with near-freezing saline in the first pig resulted in hypothermic renal (13.8 degrees C) and core body (33.1 degrees C) temperatures. For the subsequent four pigs, irrigation was limited to the first 5 minutes of ischemia to achieve renal cortical and medullary temperatures of less than 20.0 degrees C within 6 and 8 minutes of ischemia, respectively. Subsequently, the kidney was irrigated for 1 minute every 12 to 14 minutes to maintain renal temperatures of less than 20.0 degrees C. The core body temperatures decreased from a mean baseline of 37.0 degrees to 35.4 degrees C using the intermittent irrigation technique. Our early clinical experience with near-freezing saline intermittent irrigation during laparoscopic partial nephrectomy with 10 patients showed stable core body temperature and serum creatinine with a mean ischemic time of 48 minutes. CONCLUSIONS: Using standard, readily available laparoscopic irrigator/aspirators, renal cooling during laparoscopic partial nephrectomy with near-freezing saline creates acceptable renal tissue temperatures for preservation of renal function.
机译:目的:在使用现成的手术室设备交付的猪模型中,确定采用近冻盐水冲洗进行腹腔镜肾冷却的可行性。方法:对五只猪进行腹腔镜肾脏手术,将温度传感器放置在延髓和上,中,下极肾皮质。肾动脉和静脉完全闭塞后,用标准的冲洗器/抽吸器将接近冷冻的盐水输送到肾脏表面。径流在第二个吸气器汇聚​​到肺门的同时被吸引。在整个1小时的缺血期间以及松开肺门后的10分钟内,监测肾脏和体温。结果:第一头猪用接近冷冻的盐水连续冲洗肾脏,导致肾脏低温(13.8摄氏度)和核心体(33.1摄氏度)温度。对于随后的四头猪,灌溉仅限于局部缺血的前5分钟,以在局部缺血6分钟和8分钟内分别使肾皮质和髓样温度低于20.0摄氏度。随后,每12至14分钟对肾脏进行1分钟的灌溉,以保持肾脏温度低于20.0摄氏度。使用间歇灌溉技术,核心体温从平均基线37.0摄氏度降低至35.4摄氏度。我们在10例腹腔镜部分肾切除术中进行近冰冻盐水间歇冲洗的早期临床经验显示稳定的核心体温和血清肌酐,平均缺血时间为48分钟。结论:使用标准的,容易获得的腹腔镜冲洗器/抽吸器,在腹腔镜部分肾切除术中用接近冷冻的盐水冷却肾脏,可以维持可接受的肾脏组织温度,以保持肾脏功能。

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