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输尿管通路鞘的系统评估

Systematic evaluation of ureteral access sheaths.

作者信息

Monga Manoj, Gawlik Aaron, Durfee William

机构信息

Department of Urologic Surgery, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

Urology. 2004 May;63(5):834-6. doi: 10.1016/j.urology.2003.12.025.

Abstract

OBJECTIVES

To compare the physical characteristics of ureteral access sheaths that affect their ability to resist buckling and kinking in the ureter.

METHODS

Eight commercially available ureteral sheaths were tested. The buckling pressure was measured by adding sequential loads to a point 20 cm from the tip of the sheath until the mass that resulted in buckling of the catheter was determined. The kinking pressure was determined by measuring the diameter of the sheath with a digital caliper as sequential loads were applied to the surface of the sheath. The frictional properties of the sheath were measured by testing the force required to push the sheath through a mock tube.

RESULTS

The Cook Flexor was more resistant to buckling, requiring 202 g of force before buckling occurred, and both the Cook Flexor and the Applied access sheaths were more lubricious. The kinking measurements demonstrated a linear loss of diameter of the sheath with added loads. The Applied Forte XE and Cook Flexor ureteral access sheaths were more resistant to kinking than were the other sheaths tested.

CONCLUSIONS

Understanding the physical characteristics of ureteral sheaths may help determine which sheaths will perform well with regard to buckling during insertion and kinking during use.

摘要

目的

比较输尿管通路鞘的物理特性,这些特性会影响其在输尿管中抵抗弯曲和扭结的能力。

方法

对8种市售输尿管鞘进行测试。通过向鞘尖端20厘米处的一点依次施加负荷,直至确定导致导管弯曲的质量,来测量弯曲压力。通过在向鞘表面施加依次负荷时,用数字卡尺测量鞘的直径来确定扭结压力。通过测试将鞘推过模拟管所需的力来测量鞘的摩擦特性。

结果

Cook Flexor鞘更抗弯曲,在发生弯曲前需要202克的力,并且Cook Flexor鞘和Applied通路鞘都更润滑。扭结测量表明,随着负荷增加,鞘的直径呈线性减小。Applied Forte XE鞘和Cook Flexor输尿管通路鞘比其他测试鞘更抗扭结。

结论

了解输尿管鞘的物理特性可能有助于确定哪些鞘在插入过程中的弯曲和使用过程中的扭结方面表现良好。

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