Fletcher Mark D, Krumbholz Katrin, de Boer Jessica
Medical Research Council Institute of Hearing Research, The University of Nottingham, University Park, Nottingham, NG7 2RD, UK.
School of Psychology, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.
J Assoc Res Otolaryngol. 2016 Dec;17(6):559-575. doi: 10.1007/s10162-016-0574-8. Epub 2016 Aug 22.
The active cochlear mechanism amplifies responses to low-intensity sounds, compresses the range of input sound intensities to a smaller output range, and increases cochlear frequency selectivity. The gain of the active mechanism can be modulated by the medial olivocochlear (MOC) efferent system, creating the possibility of top-down control at the earliest level of auditory processing. In humans, MOC function has mostly been measured by the suppression of otoacoustic emissions (OAEs), typically as a result of MOC activation by a contralateral elicitor sound. The exact relationship between OAE suppression and cochlear gain reduction, however, remains unclear. Here, we measured the effect of a contralateral MOC elicitor on perceptual estimates of cochlear gain and compression, obtained using the established temporal masking curve (TMC) method. The measurements were taken at a signal frequency of 2 kHz and compared with measurements of click-evoked OAE suppression. The elicitor was a broadband noise, set to a sound pressure level of 54 dB to avoid triggering the middle ear muscle reflex. Despite its low level, the elicitor had a significant effect on the TMCs, consistent with a reduction in cochlear gain. The amount of gain reduction was estimated as 4.4 dB on average, corresponding to around 18 % of the without-elicitor gain. As a result, the compression exponent increased from 0.18 to 0.27.
活跃的耳蜗机制会放大对低强度声音的反应,将输入声音强度范围压缩到较小的输出范围,并提高耳蜗频率选择性。活跃机制的增益可由内侧橄榄耳蜗(MOC)传出系统调节,从而在听觉处理的最早阶段产生自上而下控制的可能性。在人类中,MOC功能主要通过耳声发射(OAE)的抑制来测量,通常是由于对侧诱发声音激活MOC所致。然而,OAE抑制与耳蜗增益降低之间的确切关系仍不清楚。在此,我们测量了对侧MOC诱发声对使用既定的时间掩蔽曲线(TMC)方法获得的耳蜗增益和压缩感知估计的影响。测量在2kHz的信号频率下进行,并与点击诱发的OAE抑制测量结果进行比较。诱发声是宽带噪声,设置为54dB的声压级以避免触发中耳肌肉反射。尽管其强度较低,但诱发声对TMC有显著影响,这与耳蜗增益降低一致。增益降低量平均估计为4.4dB,约占无诱发声增益的18%。结果,压缩指数从0.18增加到0.27。