Department of Urology, Tulane University School of Medicine, 1430 Tulane Avenue, SL-42, Room 3522, New Orleans, LA 70112, USA.
Int Urol Nephrol. 2012 Oct;44(5):1425-9. doi: 10.1007/s11255-012-0191-3. Epub 2012 May 12.
To determine whether placement of a 10 French dual lumen catheter produces a low-pressure collecting system during retrograde irrigation to induce renal hypothermia. Indication for the study is as a potential adjunct for partial nephrectomy.
Ex vivo porcine kidneys underwent harvest, and a ureteral catheter (either single lumen or dual lumen) was placed in the ureter within the renal pelvis. Pressure measurements (n = 1,080) were recorded at 1-s intervals. Irrigant flow rates were initiated at gravity and subsequently increased at 10 cc/min increments to a maximum of 100 cc/min.
During retrograde infusion without a dual lumen catheter, every 10 cc/min rate increase resulted in an 8 cm H(2)O rise in intrarenal pressure. The maximum flow rate obtained was 20 cc/min before urinary extravasation or intrarenal drainage occurred. Maximum pressure obtained before urinary extravasation or collecting system perforation was 16 cm H(2)O. Placement of a dual lumen catheter within the renal pelvis allowed intrarenal pressures to remain less than 5 cm H(2)O (when infusion rates <80 cc/min). The maximum flow rate while maintaining pressures <20 cm H(2)O was 90 cc/min. Flow rates above 100 cc/min resulted in urinary extravasation. The maximal flow rate that is safe for collecting systems with a dual lumen catheter is 80 cc/min, and without a dual lumen catheter rates greater than 20 cc/min resulted in collecting system perforations.
Using an ex vivo porcine model, application of a 10 French ureteral dual lumen catheter produced adequate retrograde drainage that resulted in low intrarenal pressures at high infusion rates (up to 80 cc/min).
确定在逆行冲洗时放置 10Fr 双腔导管是否会在肾盂内产生低压收集系统,以诱导肾低温。本研究的适应证是作为部分肾切除术的辅助手段。
离体猪肾进行采集,输尿管内放置输尿管导管(单腔或双腔)。在肾盂内。以 1s 的间隔记录压力测量值(n=1080)。以重力开始冲洗,随后以 10cc/min 的增量增加到最大 100cc/min。
在没有双腔导管的逆行灌注过程中,每增加 10cc/min 的速度,肾内压升高 8cmH2O。在发生尿外渗或肾内引流之前,获得的最大流速为 20cc/min。在发生尿外渗或收集系统穿孔之前,获得的最大压力为 16cmH2O。在肾盂内放置双腔导管可使肾内压力保持在 5cmH2O 以下(当灌注率<80cc/min)。在压力<20cmH2O 时维持最大流速为 90cc/min。流速超过 100cc/min 会导致尿外渗。对于双腔导管收集系统,最大安全流速为 80cc/min,而没有双腔导管时,流速大于 20cc/min 会导致收集系统穿孔。
使用离体猪模型,应用 10Fr 输尿管双腔导管可实现足够的逆行引流,在高灌注率(高达 80cc/min)时可产生较低的肾内压。