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首页> 外文期刊>Journal of endourology >The Effect of Irrigation Power and Ureteral Access Sheath Diameter on the Maximal Intra-Pelvic Pressure During Ureteroscopy: In Vivo Experimental Study in a Live Anesthetized Pig
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The Effect of Irrigation Power and Ureteral Access Sheath Diameter on the Maximal Intra-Pelvic Pressure During Ureteroscopy: In Vivo Experimental Study in a Live Anesthetized Pig

机译:灌溉能力和输尿管内鞘直径对输尿管诊断过程中最大内骨盆压力的影响:在生物麻醉猪的体内实验研究中

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摘要

Objectives: To assess the effect of irrigation settings and the size of ureteral access sheath (UAS) on the maximal intra-pelvic pressure (IPPmax) during ureteroscopy (URS) in pigs. Materials and Methods: In supine position, three anesthetized female pigs underwent cystoscopy to insert a 6F ureteral catheter in each ureter. Pigs were then turned to prone position to establish a percutaneous access, insert a 10F nephrostomy tube in the kidney, and connect it to a urodynamic device. An 8F semi-rigid ureteroscope or the Flex-X2 Flexible Ureteroscope was used with two irrigation settings: gravity flow and manual pumping using a commercial pump. URS was performed without UAS and with the UAS 9.5/11, 12/14, 14/16 at the ureteropelvic junction and the IPPmax was recorded. Results: Under gravity irrigation, the recorded IPPmax during semi-rigid URS in the distal ureter and the renal pelvis was 0 and 30 cmH(2)O, respectively. Further, the IPPmax during flexible URS in the renal pelvis without UAS, with UAS 9.5/11.5, with UAS 12/14, and with UAS 14/16 was 23, 6, 2, and 1 cmH(2)O, respectively. Under manual pumping, the IPPmax during semi-rigid URS in the distal ureter and the renal pelvis was 84 and 105 cmH(2)O, respectively. Further, the IPPmax during flexible URS in the renal pelvis without UAS, with UAS 9.5/11.5, with UAS 12/14, and with UAS 14/16 was 45, 46, 18, and 1 cmH(2)O, respectively. Conclusion: Manual pumping can significantly increase the IPPmax to unsafe levels during URS. The UAS can significantly decrease the IPPmax, even under manual pumping. The larger the UAS, the lower the IPPmax. The use of UAS can render URS safer by acting as a safeguard against the consequences of increased IPP, even under forced irrigation.
机译:目的:评估灌溉环境和输尿管鞘(UAS)对​​猪中的输尿管镜(URS)的最大内骨盆压力(IPPMAX)的影响。材料和方法:在仰卧位,三个麻醉的雌性猪接受膀胱镜检查,在每个输尿管中插入6F输尿管导管。然后将猪转向俯卧位以建立经皮进入,在肾脏中插入10F肾病术管,并将其连接到织机织机组织。 8F半刚性输尿管镜或Flex-X2柔性输尿管镜配有两种灌溉设施:使用商用泵的重力流动和手动泵送。 URS在没有UAS的情况下进行,并且在输尿管潜水线连接处的UAS 9.5 / 11,12 / 14,14 / 16,记录了IPPMAX。结果:在重力灌溉,远端输尿管中半刚性UR和肾盂分别为0且30cmH(2)o的记录的IPPmax。此外,在没有UA的肾盂中的柔性UR期间的IPPMAX,用UAS 9.5 / 11.5,分别具有UAS 12/14和UAS 14/16为23,6,2和1cmH(2)o。在手动泵送下,远侧输尿管和肾盂中半刚性UR期间的IPPMAX分别为84和105cmH(2)o。此外,在没有UA的肾盂中的柔性UR期间的IPPMAX,用UAS 12 / 11.5,uas 12/14,分别为45,46,18和1cmH(2)o。结论:手动泵送在URS期间可以显着增加IPPMAX到不安全的水平。即使在手动泵送下,UA也可以显着降低IPPMAX。 UA越大,IPPMAX越低。即使在强迫灌溉下,使用UAS可以通过以防止IPP增加的后果来使URS更安全。

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