Chatterjee M, Zwislocki J J
Institute for Sensory Research, Syracuse University, NY 13244, USA.
Hear Res. 1997 Sep;111(1-2):65-75. doi: 10.1016/s0378-5955(97)00089-0.
In the past, several researchers have reported a substantial shift in the peak of the tone-evoked excitation pattern toward the base of the cochlea following an increase in the SPL of the stimulating tone. Evidence for such peak shifts has been found in the responses of auditory nerve fibers, cochlear microphonics, and the responses of outer hair cells and supporting cells in the cochlea, as well as in basilar membrane vibration measurements, and indirectly, in psychophysical data. However, direct evidence for such a peak shift in inner hair cell (IHC) responses has been relatively sparse. If the peak shift is preserved in the information conveyed to the auditory nerve fibers by the IHCs, the classical 'place theory' for frequency coding in the cochlea requires modification. In this study, the nature and extent of the SPL-dependent peak shift is examined with the help of recordings in the IHCs and other cells of the organ of Corti in the 0.5-2.5 kHz region of the Mongolian gerbil cochlea. It is demonstrated that the peak shift is a universal phenomenon in the diverse cell types in this region of the cochlea. Most importantly, a large SPL-dependent peak shift is demonstrated in IHC responses. On the other hand, the recordings indicate that the apical cutoff of the spatial excitation pattern is SPL-independent. We conclude, therefore, that the place theory of pitch perception must be abandoned or at least modified.
过去,几位研究人员报告称,随着刺激音声压级(SPL)的增加,音调诱发的兴奋模式峰值会朝着耳蜗底部发生显著偏移。在听神经纤维的反应、耳蜗微音器电位、耳蜗中外毛细胞和支持细胞的反应中,以及在基底膜振动测量中,甚至在心理物理学数据中,都发现了这种峰值偏移的证据。然而,关于内毛细胞(IHC)反应中这种峰值偏移的直接证据相对较少。如果峰值偏移在由内毛细胞传递给听神经纤维的信息中得以保留,那么耳蜗中频率编码的经典“位置理论”就需要修正。在本研究中,借助于对蒙古沙鼠耳蜗0.5 - 2.5千赫兹区域内毛细胞和柯蒂氏器其他细胞的记录,研究了声压级依赖性峰值偏移的性质和程度。结果表明,峰值偏移是该区域耳蜗中多种细胞类型的普遍现象。最重要的是,在内毛细胞反应中证实了存在较大的声压级依赖性峰值偏移。另一方面,记录表明空间兴奋模式的顶端截止频率与声压级无关。因此,我们得出结论,音高感知的位置理论必须被摒弃或至少进行修正。