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What is the role of the medial olivocochlear system in speech-in-noise processing?

机译:内侧耳蜗系统在语音处理中的作用是什么?

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摘要

The medial olivocochlear (MOC) bundle reduces the gain of the cochlear amplifier through reflexive activation by sound. Physiological results indicate that MOC-induced reduction in cochlear gain can enhance the response to signals when presented in masking noise. Some previous studies suggest that this “antimasking” effect of the MOC system plays a role in speech-in-noise perception. The present study set out to reinvestigate this hypothesis by correlating measures of MOC activity and speech-in-noise processing across a group of normal-hearing participants. MOC activity was measured using contralateral suppression of otoacoustic emissions (OAEs), and speech-in-noise processing was measured by measuring the effect of noise masking on performance in a consonant-vowel (CV) discrimination task and on auditory brain stem responses evoked by a CV syllable. Whereas there was a significant correlation between OAE suppression and both measures of speech-in-noise processing, the direction of this correlation was opposite to that predicted by the antimasking hypothesis, in that individuals with stronger OAE suppression tended to show greater noise-masking effects on CV processing. The current results indicate that reflexive MOC activation is not always beneficial to speech-in-noise processing. We propose an alternative to the antimasking hypothesis, whereby the MOC system benefits speech-in-noise processing through dynamic (e.g., attention- and experience-dependent), rather than reflexive, control of cochlear gain.
机译:内侧小耳蜗(MOC)束通过声音的反射性激活降低了耳蜗放大器的增益。生理结果表明,当在掩盖噪声中出现时,MOC引起的耳蜗增益降低可以增强对信号的响应。先前的一些研究表明,MOC系统的这种“抗掩盖”效应在语音中的噪声感知中起作用。本研究着手通过将一组正常听力参与者的MOC活动和噪声言语处理的度量值进行关联来重新研究该假设。通过对侧抑制耳声发射(OAE)来测量MOC活性,并通过测量噪声掩蔽对辅音元音(CV)识别任务中的性能以及对诱发的听觉脑干反应的影响来测量语音中的噪声。 CV音节。虽然OAE抑制与两种语音处理方法之间存在显着相关性,但这种相关性的方向与反掩盖假设所预测的方向相反,因为具有较强OAE抑制能力的人倾向于表现出更大的噪声掩盖效果关于简历处理。当前的结果表明自反MOC激活并不总是有益于噪声语音处理。我们提出了一种反掩盖假设的替代方法,即MOC系统通过动态(例如,依赖于注意力和经验)而不是反身地控制耳蜗增益来受益于语音中的语音处理。

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