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熟练耳科外科医师使用超声骨刀的学习曲线。

Learning curve for Piezosurgery in well-trained otological surgeons.

机构信息

ENT Department, University of Genoa, Genoa, Italy.

出版信息

Otolaryngol Head Neck Surg. 2010 Jan;142(1):120-5. doi: 10.1016/j.otohns.2009.10.013.

Abstract

OBJECTIVE

Piezosurgery is an ultrasound instrument (24.7-29.5 kHz) capable of cutting bone without necrosis and nonmineralized tissue damage. The aim of this work has been to determine the time required for a well-trained surgeon to perform otological surgery with the piezoelectric device.

STUDY DESIGN

Case series with planned data collection. Sixty-three patients affected by otosclerosis and 63 by chronic otitis media were enrolled. For each disease, patients were divided into three numerically equal groups, with each group assigned to a well-trained otological surgeon. Patients underwent stapedotomy (n = 63) and intact canal wall tympanoplasty (n = 63) with the piezoelectric device.

SETTING

ENT Department, University of Genoa (Italy).

SUBJECTS AND METHODS

We recorded "skin-to-skin" operation time, surgical success, surgical complication, and hospital stay duration. Before and one year after surgery, all patients underwent pure-tone audiometry, tympanometry, recording of transient-evoked otoacoustic emission, recording of distortion product otoacoustic emission, auditory brainstem response, and electronystamographic recording.

RESULTS

In each surgical technique, the piezoelectric device provided excellent control without side effects on the adjacent structures of the middle and inner ear.

CONCLUSION

The piezoelectric device is a new bony scalpel that uses microvibrations at ultrasonic frequency so that soft tissue (nerve, vessel, dura mater, etc) will not be damaged even on accidental contact with the cutting tip. A feature of the piezoelectric device is its good manageability, which makes it easy for a well-trained otological surgeon to create a straight osteotomy line without any learning period: this renders the piezoelectric device suitable for bone surgery.

摘要

目的

超声骨刀(频率 24.7-29.5kHz)可切割骨组织,无坏死且对非矿化组织损伤小。本研究旨在确定熟练外科医生使用超声骨刀完成耳科手术所需的时间。

研究设计

前瞻性病例系列研究,纳入 63 例耳硬化症和 63 例慢性中耳炎患者。每例患者分为三组,每组均由一位经验丰富的耳科医生完成手术。所有患者均接受超声骨刀行镫骨切除术(63 例)和完壁式鼓室成形术(63 例)。

地点

意大利热那亚大学耳鼻喉科。

对象和方法

记录“皮肤-皮肤”手术时间、手术成功率、手术并发症和住院时间。术前及术后 1 年均行纯音测听、鼓室图、瞬态诱发耳声发射、畸变产物耳声发射、听性脑干反应和眼震电图检查。

结果

在每种手术技术中,超声骨刀均能在不损伤中耳和内耳相邻结构的情况下提供良好的控制效果。

结论

超声骨刀是一种新的骨外科手术刀,利用超声频率的微振动,即使意外接触切割尖端也不会损伤神经、血管、硬脑膜等软组织。超声骨刀的一个特点是易于操控,这使得经过培训的耳科医生可以在无需学习期的情况下轻松地创建直线骨切开线,因此它适用于骨外科手术。

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