MRC Institute of Hearing Research, Univ. Park, Nottingham, UK.
J Neurophysiol. 2012 Mar;107(5):1301-12. doi: 10.1152/jn.00222.2011. Epub 2011 Dec 7.
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.
内侧橄榄耳蜗(MOC)束通过声音的反射激活来降低耳蜗放大器的增益。生理结果表明,MOC 引起的耳蜗增益降低可以增强在掩蔽噪声中呈现的信号的响应。一些先前的研究表明,MOC 系统的这种“抗掩蔽”效应在噪声中的语音感知中起作用。本研究通过在一组正常听力参与者中对 MOC 活动和噪声中的语音处理测量进行相关,重新检验了这一假设。使用耳声发射(OAE)的对侧抑制来测量 MOC 活动,并用噪声掩蔽对辅音-元音(CV)辨别任务中的表现和 CV 音节诱发的听觉脑干反应的影响来测量噪声中的语音处理。尽管 OAE 抑制与噪声中的语音处理的两种测量方法之间存在显著相关性,但这种相关性的方向与抗掩蔽假设预测的相反,即 OAE 抑制越强的个体,CV 处理的噪声掩蔽效应越大。目前的结果表明,反射性 MOC 激活并不总是有益于噪声中的语音处理。我们提出了一个替代抗掩蔽假设的方案,即 MOC 系统通过对耳蜗增益的动态(例如,注意力和经验依赖)而不是反射性控制,从而有益于噪声中的语音处理。