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畸变产物耳声发射对侧抑制效应的研究
引用本文:王洪田,钟乃川.畸变产物耳声发射对侧抑制效应的研究[J].临床耳鼻咽喉头颈外科杂志,1997,11(11):489-492.
作者姓名:王洪田  钟乃川
作者单位:同济医科大学附属协和医院耳鼻咽喉科教研室!武汉430022
摘    要:利用ILO92耳动态分析仪,测试23例(46耳)正常青年人的畸变产物耳声发射(DPOAE)和对侧窄带噪声(NBN)的影响。结果:(1)对侧NBN对DPOAE的抑制非常明显,随NBN强度增加DPOAE幅值下降增加,二者呈显著负相关(F2为1~6kHz,γ为-0.49~-0.24,均P〈0.05,斜率0.26~0.08dB/10dB)。(2)在F2为中频(1.2kHz)且为中等强度(45~65dBSP

关 键 词:耳声发射  畸变产物  内侧橄榄耳蜗  对侧抑制效应

A study on the contralateral suppressive effects of distortion product otoacoustic emissions
Wang Hongtian, Zhong Naichuan.A study on the contralateral suppressive effects of distortion product otoacoustic emissions[J].Journal of Clinical Otorhinolaryngology,1997,11(11):489-492.
Authors:Wang Hongtian  Zhong Naichuan
Institution:Department of Otolaryngology, Union Hospital of Tongji Medical University, Wuhan.
Abstract:To investigate the physiological properties of contralateral suppressive effects of otoacoustic emissions, the effects of contralateral norrow band noise (NBN) on distortion product otoacoustic emissions (DPOAE) in 23 young subjects (46 ears) with normal hearing were studied using ILO92 otodynamic system. The results showed: 1. The amplitude of DPOAE (2f1-f2) was significantly reduced as the intensity of contralateral NBN increased. They were in significant minus correlation (F2 from 1 to 6 kHz, coefficients were -0.49(-)-0.24, all P < 0.05, the slope 0.26-0.08 dB/10 dB); 2. The suppressive effect was the biggest when the primary F2 was 1 kHz or 2 kHz and between 45 dB SPL and 65 dB SPL of intensity level, and damped as primary frequency increased. The most significant reduction of DPOAE amplitude was 3.85 dB SPL; 3. When contralateral NBN was below 50 dB HL, the suppression was frequency-selective; and the most suppressive effect happened when NBN intensities were between 20 dB HL and 50 dB HL. 4. The noise floor in ipsilateral car canal has not been altered by contralateral noise (20-50 dB HL). The underlying mechanism was discussed in this study. It appears that contralateral suppressive effects of DPOAE can be used as a tool in exploring the function of medial olivocochlear system.
Keywords:Otoacoustic emissions  Distortion products  Contralateral suppressive effects  Medial olivocochlear system  Human subjects
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