Morand-Villeneuve N, Garnier S, Grimault N, Veuillet E, Collet L, Micheyl C
UMR CNRS 5020, Laboratoire Neurosciences et Systèmes Sensoriels, Pavillon U. Hôpital E. Herriot, 69437 Lyon Cedex 03, France.
Physiol Behav. 2002 Nov;77(2-3):311-20. doi: 10.1016/s0031-9384(02)00855-7.
In order to test the hypothesis of a role of cochlear efferent activity in intensity perception in humans, loudness functions, loudness integration, and loudness summation were measured in the absence and in the presence of contralateral noise in normal-hearing subjects. Additionally, relationships with the effect of the noise on evoked otoacoustic emissions (EOAEs) were tested, and comparisons with vestibular neurotomy patients were performed. Overall, the results failed to demonstrate significant effects of contralateral noise stimulation on loudness functions and loudness integration. Furthermore, no significant differences were found in vestibular neurotomy patients. A significant effect of contralateral noise on loudness summation was noted, but was not related to the effect on otoacoustic emissions. The present results fail to support the notion that efferent influences onto the cochlear compression have a significant perceptual effect.
为了检验耳蜗传出神经活动在人类强度感知中所起作用的假设,我们对听力正常的受试者在无对侧噪声和有对侧噪声的情况下测量了响度函数、响度整合和响度总和。此外,还测试了与噪声对诱发耳声发射(EOAE)影响的关系,并与前庭神经切断术患者进行了比较。总体而言,结果未能证明对侧噪声刺激对响度函数和响度整合有显著影响。此外,在前庭神经切断术患者中未发现显著差异。注意到对侧噪声对响度总和有显著影响,但与对耳声发射的影响无关。目前的结果不支持传出神经对耳蜗压缩的影响具有显著感知效应这一观点。