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Differentiating Middle Ear and Medial Olivocochlear Effects on Transient-Evoked Otoacoustic Emissions

机译:区分中耳和耳蜗内侧对短暂诱发耳声发射的影响

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摘要

The response of the inner ear is modulated by the middle ear muscle (MEM) and olivocochlear (OC) efferent systems. Both systems can be activated reflexively by acoustic stimuli delivered to one or both ears. The acoustic middle ear muscle reflex (MEMR) controls the transmission of acoustic signals through the middle ear, while reflex activation of the medial component of the olivocochlear system (the MOCR) modulates cochlear mechanics. The relative prominence of the two efferent systems varies widely between species. Measuring the effect of either of these systems can be confounded by simultaneously activating the other. We describe a simple, sensitive online method that can identify the effects both systems have on otoacoustic emissions (OAEs) evoked by transient stimuli such as clicks or tone pips (TEOAEs). The method detects directly in the time domain the changes in the stimulus and/or emission pressures caused by contralateral noise. Measurements in human participants are consistent with other reports that the threshold for MOCR activation is consistently lower than for MEMR. The method appears to control for drift and subject-generated noise well enough to avoid the need for post hoc processing, making it promising for application in animal experiments (even if awake) and in the hearing clinic.
机译:内耳的反应受中耳肌肉(MEM)和少毛(OC)传出系统的调节。可以通过传递到一只或两只耳朵的声音刺激来反射性地激活两个系统。声学中耳肌肉反射(MEMR)控制通过中耳的声音信号的传输,而耳蜗系统(MOCR)的内侧成分的反射激活可调节耳蜗力学。两种传出系统的相对突出度在物种之间差异很大。可以通过同时激活另一个来混淆测量这两个系统中任何一个的效果。我们描述了一种简单,灵敏的在线方法,该方法可以识别两个系统对瞬态刺激(例如咔嗒声或音调点(TEOAE))引起的耳声发射(OAE)的影响。该方法在时域中直接检测由对侧噪声引起的刺激和/或发射压力的变化。人类参与者的测量与其他报告一致,即MOCR激活的阈值始终低于MEMR。该方法似乎可以很好地控制漂移和对象产生的噪声,从而避免了事后处理的需要,使其有望在动物实验(即使清醒)和听力诊所中得到应用。

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