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橄榄耳蜗传出神经与中耳对侧耳噪声引起的耳声发射改变的贡献

Olivocochlear efferent vs. middle-ear contributions to the alteration of otoacoustic emissions by contralateral noise.

作者信息

Büki B, Wit H P, Avan P

机构信息

ENT Department, Semmelweis University, Budapest, Hungary.

出版信息

Brain Res. 2000 Jan 3;852(1):140-50. doi: 10.1016/s0006-8993(99)02227-1.

Abstract

The medial olivocochlear efferent bundle is the key element of a bilateral efferent reflex activated by sound in either ear and acting directly on cochlear outer hair cells (OHC) via numerous cholinergic synapses. It probably contributes to regulating the mechanical activity of the cochlea. Otoacoustic emissions, being sounds emitted by the cochlea as a reflection of its activity and suppressed by efferent activation, are increasingly considered to be the privileged tool for a noninvasive assessment of the efferent reflex. However, confounding effects on otoacoustic emissions can occur. A primary influence is middle-ear muscle reflex activation, which shares common features with the effects of cochlear efferent activation. We report a systematic comparison of the responses of human otoacoustic emissions to efferent activation by low-level noise in the contralateral ear to various middle-ear manipulations (reflex contractions of the stapedius muscle induced by high-level contralateral noise; moderate middle-ear pressure changes). The profiles of level and phase changes of otoacoustic emissions as a function of frequency were highly specific to the origin of the effects. The changes induced by middle-ear manipulations matched the predictions computed from a standard lumped-element middle-ear model, with one or two peaks around the resonance frequency(ies) of the involved subsystem, stapes or tympanic membrane. In contrast, the efferent effect was completely different, exhibiting a broadband-level suppression associated with a small phase lead. We propose that a careful vector analysis of otoacoustic emission modifications enables the identification of the contribution of the efferent reflex without ambiguity even when it is mixed with middle-ear effects. Thereby, otoacoustic emissions can be used more reliably as noninvasive probes of efferent olivocochlear function.

摘要

内侧橄榄耳蜗传出束是一种双侧传出反射的关键组成部分,该反射可被任一耳朵中的声音激活,并通过众多胆碱能突触直接作用于耳蜗外毛细胞(OHC)。它可能有助于调节耳蜗的机械活动。耳声发射作为耳蜗活动的反映而发出的声音,并被传出激活所抑制,越来越被认为是一种用于无创评估传出反射的特权工具。然而,可能会对耳声发射产生混杂效应。一个主要影响是中耳肌肉反射激活,它与耳蜗传出激活的效应具有共同特征。我们报告了人类耳声发射对来自对侧耳的低水平噪声的传出激活与各种中耳操作(由对侧高水平噪声诱发的镫骨肌反射收缩;适度的中耳压力变化)的反应的系统比较。耳声发射的水平和相位变化随频率的分布对效应的来源具有高度特异性。中耳操作引起的变化与根据标准集总元件中耳模型计算的预测结果相符,在涉及的子系统(镫骨或鼓膜)的共振频率周围有一个或两个峰值。相比之下,传出效应则完全不同,表现为与小相位超前相关的宽带水平抑制。我们提出,对耳声发射变化进行仔细的矢量分析能够明确识别传出反射的贡献,即使它与中耳效应混合时也不会产生歧义。因此,耳声发射可以更可靠地用作传出橄榄耳蜗功能的无创探测手段。

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