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[二氧化碳激光镫骨切除术的动物实验研究]

[Animal experiment studies on CO2 laser stapedotomy].

作者信息

Jovanovic S, Anft D, Schönfeld U, Berghaus A, Scherer H

机构信息

Hals-Nasen-Ohrenklinik mit Polikliniken im Klinikum Benjamin Franklin, Freien Universität Berlin.

出版信息

Laryngorhinootologie. 1995 Jan;74(1):26-32. doi: 10.1055/s-2007-997681.

Abstract

Experiments were performed in guinea pigs to clarify which, if any, of the CO2 lasers used can damage the inner ear on application of the laser parameters required for stapedotomy. A further aim was to determine their application safety. The basal convolution of the guinea-pig cochlea was chosen as the application site, since its thickness is similar to that of the human stapes base. We examined the laser effect in connection with perforation of the basal convolution and subsequent application in the open cochlea. Acoustic evoked potentials (compound action potentials [CAP]) yielded information on inner-ear function. Animals without laser treatment were used as controls. Perforation of the basal convolution and laser applications in the open cochlea with the same parameters did not lead to a measurable CAP alteration with the CO2 cw laser (power: 8 W, pulse duration: 50 ms, power density: 3200 W/cm2). An increase of the laser power to 15 W (power density: 6000 W/cm2) and of the pulse duration to 200 and 500 ms (energy: 3 J and 7.5 J) caused partly irreversible CAP alterations; finally, no potential could be recorded any more at a maximal laser power and pulse duration (15 W and 500 ms). Examination of high power densities (40,000 and 60,000 W/cm2) through reduction of the laser beam diameter to 180 microns yielded comparable results.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在豚鼠身上进行了实验,以明确在所使用的二氧化碳激光中,是否有任何一种在应用镫骨切除术所需的激光参数时会损害内耳。另一个目的是确定其应用安全性。选择豚鼠耳蜗的基底回作为应用部位,因为其厚度与人镫骨底部的厚度相似。我们结合基底回穿孔以及随后在开放耳蜗中的应用来研究激光效应。听觉诱发电位(复合动作电位[CAP])提供了有关内耳功能的信息。未接受激光治疗的动物用作对照。使用连续波二氧化碳激光(功率:8瓦,脉冲持续时间:50毫秒,功率密度:3200瓦/平方厘米)时,基底回穿孔以及在开放耳蜗中以相同参数应用激光,并未导致可测量的CAP改变。将激光功率增加到15瓦(功率密度:6000瓦/平方厘米),并将脉冲持续时间增加到200和500毫秒(能量:3焦耳和7.5焦耳),会导致部分不可逆的CAP改变;最终,在最大激光功率和脉冲持续时间(15瓦和500毫秒)时再也无法记录到电位。通过将激光束直径减小到180微米来检查高功率密度(40000和60000瓦/平方厘米),得到了类似的结果。(摘要截于250字)

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