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插入输尿管镜设备时柔性输尿管镜工作通道的耐用性

Durability of working channel in flexible ureteroscopes when inserting ureteroscopic devices.

作者信息

Seto Chikashi, Ishiura Yoshiyuki, Egawa Masayuki, Komatsu Kazuto, Namiki Mikio

机构信息

Department of Urology, Kanazawa University Graduate School of Medical Science, Ishikawa, Japan.

出版信息

J Endourol. 2006 Mar;20(3):223-6. doi: 10.1089/end.2006.20.223.

Abstract

PURPOSE

We studied the physical damage to the working channel of flexible ureteroscopes caused by insertion of various accessories. A procedure was developed to avoid channel damage.

MATERIALS AND METHODS

An experimental model representing a flexible ureteroscope was prepared, and damage to its working channel was evaluated by inserting instruments through it. Deflection angles of the channel were changed from 0 degrees to 120 degrees, and each device was inserted and removed 100 times for each selected angle of the channel. Any induced pinholes were identified by an air-leak test. Also, the inside of the channel was inspected with an extremely fine fiberscope.

RESULTS

Insertions of 3F biopsy forceps or a 2.4F Nitinol stone-retrieval device caused only slight damage to the model channel, even when the deflection angle was 120 degrees. However, the tips of 200- or 250-microm holmium laser fibers shaved the inner surface of the channel at 60 degrees of deflection, and at 120 degrees, the laser fiber either penetrated the channel or could not be advanced because of resistance by the channel wall. When the laser fiber was inserted within a protective tube, the channel was never damaged, even when the deflection angle was 120 degrees.

CONCLUSIONS

When devices are inserted into the working channel of a flexible ureteroscope, damage to the wall depends on the kind of device and deflection angle. Harm could be avoided by inserting the devices, especially laser probes, within a protective tube.

摘要

目的

我们研究了各种附件插入柔性输尿管镜工作通道时对其造成的物理损伤。开发了一种程序以避免通道损伤。

材料与方法

制备了一个代表柔性输尿管镜的实验模型,通过向其工作通道插入器械来评估通道损伤情况。将通道的偏转角度从0度改变到120度,针对每个选定的通道角度,每个器械插入和拔出100次。通过漏气试验确定任何引发的针孔。此外,用极细的纤维内镜检查通道内部。

结果

即使在偏转角度为120度时,插入3F活检钳或2.4F镍钛诺取石装置对模型通道仅造成轻微损伤。然而,200微米或250微米的钬激光光纤尖端在偏转60度时会刮擦通道内表面,在120度时,激光光纤要么穿透通道,要么因通道壁的阻力而无法推进。当激光光纤插入保护管内时,即使偏转角度为120度,通道也从未受损。

结论

当将器械插入柔性输尿管镜的工作通道时,通道壁的损伤取决于器械的种类和偏转角度。通过将器械,尤其是激光探头,插入保护管内可避免损伤。

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