首页> 外文期刊>Journal of endourology >Ureteral Access Sheath Deployment: How Much Force Is Too Much? Initial Studies with a Novel Ureteral Access Sheath Force Sensor in the Porcine Ureter
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Ureteral Access Sheath Deployment: How Much Force Is Too Much? Initial Studies with a Novel Ureteral Access Sheath Force Sensor in the Porcine Ureter

机译:输尿管接入护套部署:太多的力量太多了? 猪输尿管中具有新型输尿管接入护套力传感器的初步研究

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Introduction and Objectives: Ureteral injuries can occur during ureteral access sheath (UAS) deployment. The force exerted during deployment and the amount of force that results in ureteral injury is yet to be accurately quantitated. In this feasibility study, we developed and then tested a novel force-sensing device in our animal laboratory to identify the threshold force that results in a porcine ureteral injury. Methods: With Institutional Animal Care and Use Committee approval, we measured ureteral dilator and UAS deployment force using our proprietary University of California, Irvine Ureteral Access Sheath Force Sensor (UAS-FS). The exerted force was measured during deployment from the moment that the tip of the UAS was passed into the urethral meatus until it reached the renal pelvis; progression of the UAS along the ureter was monitored with fluoroscopy. Ureteroscopic evaluation was performed after deployment of each catheter/sheath >= 8F to assess for ureteral injury using the Postureteroscopic Lesion Scale (PULS). Results: Six juvenile Yorkshire female pigs (12 ureters) were studied. No injuries were detected when the deployment force was 13F resulted in greater peak forces. In five of the pigs, ureters selected for 14F UAS deployment without previous sequential dilation were injured (PULS >= 3) at a mean threshold force of 4.84 N. Serial dilation had a higher threshold for PULS >= 3 at 5.56 N. Overall, injury of PULS >= 3 was routinely noted when the force applied exceeded 8.1 N. Conclusions: The UAS-FS reliably measured forces while deploying a UAS. Significant ureteral injury can routinely be avoided if the applied force is = 3 routinely occurred when forces exceeded 8.1 N. Serial dilation may allow safe passage at higher deployment forces, as much as 5.56 N.
机译:介绍和目标:输尿管接入护套(UA)部署期间可能发生输尿管损伤。在部署期间施加的力和导致输尿管损伤的力量尚未准确定量。在这种可行性研究中,我们开发并在我们的动物实验室中测试了一种新的力传感装置,以识别导致猪输尿管损伤的阈值力。方法:采用机构动物护理和使用委员会批准,我们使用我们的加州专业大学欧文输尿管接入护套力传感器(UAS-FS)测量输尿管扩张器和UAS部署力。在部署期间,从UA的尖端通过尿道肉肉的那一刻,测量施加的力量直至其达到肾盂;用荧光检查监测沿着输尿管的UA的进展。在展开每个导管/护套> 8f后进行输尿管镜评估,以使用后静脉病变尺度(脉冲)评估输尿管损伤。结果:研究了六位少年约克夏女猪(12尿器)。当部署力为13°F导致更大的峰值力时,不会检测到损伤。在5只猪中,在4.84n的平均阈值力下,在没有先前顺序扩张的14F uas展开的尿素被损伤(脉冲> = 3)。连续扩张的脉冲阈值较高> = 3,总体而言,当施加的力超过8.1 n时,常规注意脉冲损伤> = 3。结论:UA-FS可靠地测量力,同时部署UA。如果施加的力量= 3常规发生在超过8.1n.串行扩张可能在更高的部署力下允许安全通道,则可以常规避免了显着的输尿管损伤。

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