Ruggero M A, Robles L, Rich N C, Recio A
Department of Otolaryngology, University of Minnesota, Minneapolis 54414.
Philos Trans R Soc Lond B Biol Sci. 1992 Jun 29;336(1278):307-14; discussion 314-5. doi: 10.1098/rstb.1992.0063.
The responses to sound of mammalian cochlear neurons exhibit many nonlinearities, some of which (such as two-tone rate suppression and intermodulation distortion) are highly frequency specific, being strongly tuned to the characteristic frequency (CF) of the neuron. With the goal of establishing the cochlear origin of these auditory-nerve nonlinearities, mechanical responses to clicks and to pairs of tones were studied in relatively healthy chinchilla cochleae at a basal site of the basilar membrane with CF of 8-10 kHz. Responses were also obtained in cochleae in which hair cell receptor potentials were reduced by systemic furosemide injection. Vibrations were recorded using either the Mössbauer technique or laser Doppler-shift velocimetry. Responses to tone pairs contained intermodulation distortion products whose magnitudes as a function of stimulus frequency and intensity were comparable to those of distortion products in cochlear afferent responses. Responses to CF tones could be selectively suppressed by tones with frequency either higher or lower than CF; in most respects, mechanical two-tone suppression resembled rate suppression in cochlear afferents. Responses to clicks displayed a CF-specific compressive nonlinearity, similar to that present in responses to single tones, which could be profoundly and selectively reduced by furosemide. The present findings firmly support the hypothesis that all CF-specific nonlinearities present in the auditory nerve originate in analogous phenomena of basilar membrane vibration. However, because of their lability, it is almost certain that the mechanical nonlinearities themselves originate in outer hair cells.
哺乳动物耳蜗神经元对声音的反应表现出许多非线性特征,其中一些(如双音速率抑制和互调失真)具有高度的频率特异性,强烈地调谐到神经元的特征频率(CF)。为了确定这些听神经非线性特征的耳蜗起源,我们在相对健康的毛丝鼠耳蜗基底膜的一个基底部位研究了对咔嗒声和双音对的机械反应,该部位的CF为8 - 10 kHz。我们还在通过全身注射速尿使毛细胞受体电位降低的耳蜗中获得了反应。使用穆斯堡尔技术或激光多普勒频移测速法记录振动。对双音对的反应包含互调失真产物,其幅度作为刺激频率和强度的函数与耳蜗传入反应中的失真产物相当。对CF音的反应可以被频率高于或低于CF的音选择性抑制;在大多数方面,机械双音抑制类似于耳蜗传入神经中的速率抑制。对咔嗒声的反应表现出一种CF特异性的压缩非线性,类似于对单音反应中存在的非线性,速尿可以显著且选择性地降低这种非线性。目前的研究结果有力地支持了这样一种假设,即听神经中所有CF特异性非线性特征都起源于基底膜振动的类似现象。然而,由于它们的不稳定性,几乎可以肯定机械非线性本身起源于外毛细胞。