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声音过度刺激和缺氧猫的短纯音诱发耳声发射

Tone burst-evoked otoacoustic emissions in cats with acoustic overstimulation and anoxia.

作者信息

Iwasaki S, Mizuta K, Hoshino T

机构信息

Department of Otolaryngology, Hamamatsu University School of Medicine, Japan.

出版信息

Hear Res. 1998 Apr;118(1-2):83-9. doi: 10.1016/s0378-5955(98)00020-3.

Abstract

Transient evoked otoacoustic emissions (TEOAE) produced by a 2 kHz tone burst could be detected in 30 out of 37 ears (81% detectability) in 21 cats. The amplitude of tone burst-evoked TEOAE was saturated at a stimulus level between 45 and 50 dB SPL and the latency time of peak amplitude was 6.23 ms on average (5.53-7.28 ms). The effects of pure tone overstimulation and short-term anoxia on the tone burst-evoked TEOAE in cats were evaluated. A permanent detection threshold shift of the TEOAE was confirmed at 24 h and 1 week after the overstimulation at 125 dB SPL. In these cases, damaged first row outer hair cells and inner hair cells were observed over an average length of 3.3 mm (16% of the entire cochlear length) by scanning electron microscopy. These findings suggested that the TEOAE can detect localized cochlear hair cell damage. A temporary detection threshold shift of the TEOAE was observed after the overstimulation at 105 dB SPL, and the threshold shift recovered in 107.5 min on average. In the short-term anoxia trial, the TEOAE amplitude started to decrease 45-90 s after the anoxia and recovered completely when the duration of anoxia was under 1 min. However, the TEOAE amplitude did not recover pre-anoxia values (it remained below 80% of its initial value) after 5 min when the anoxia was over 2 min. These findings demonstrated that the detection threshold and amplitude of the TEOAE were also affected by metabolic changes of the cochlear hair cells. Tone burst-evoked TEOAE are useful for the evaluation of localized histological and functional damage of the cochlear hair cells.

摘要

在21只猫的37只耳朵中,有30只(可检测率81%)能检测到由2kHz短纯音诱发的瞬态诱发耳声发射(TEOAE)。短纯音诱发的TEOAE的振幅在45至50dB SPL的刺激水平下达到饱和,峰值振幅的潜伏期平均为6.23ms(5.53 - 7.28ms)。评估了纯音过刺激和短期缺氧对猫短纯音诱发的TEOAE的影响。在125dB SPL过刺激后24小时和1周时,证实TEOAE出现永久性检测阈值偏移。在这些情况下,通过扫描电子显微镜观察到受损的第一排外毛细胞和内毛细胞平均长度为3.3mm(占整个耳蜗长度的16%)。这些发现表明,TEOAE可检测耳蜗毛细胞的局部损伤。在105dB SPL过刺激后观察到TEOAE出现暂时的检测阈值偏移,阈值偏移平均在107.5分钟内恢复。在短期缺氧试验中,缺氧后45 - 90秒TEOAE振幅开始下降,当缺氧持续时间在1分钟以内时可完全恢复。然而,当缺氧超过2分钟时,5分钟后TEOAE振幅未恢复到缺氧前的值(仍低于其初始值的80%)。这些发现表明,TEOAE的检测阈值和振幅也受耳蜗毛细胞代谢变化的影响。短纯音诱发的TEOAE有助于评估耳蜗毛细胞的局部组织学和功能损伤。

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