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牛蛙外周听觉系统对相位谱的编码。

Encoding of phase spectra by the peripheral auditory system of the bullfrog.

作者信息

Bodnar D A, Capranica R R

机构信息

Section of Neurobiology and Behavior, Cornell University, Ithaca, NY 14853.

出版信息

J Comp Physiol A. 1994 Feb;174(2):157-71. doi: 10.1007/BF00193783.

Abstract

In this study we have examined the sensitivity of auditory nerve fibers in the bullfrog (Rana catesbeiana) to changes in the phase spectrum of an equal-amplitude multi-harmonic stimulus which spanned the bullfrog's range of hearing. To assess peripheral auditory phase sensitivity, changes in the response properties of VIIIth nerve fibers were measured when the relative phase angle of a single harmonic component nearest a unit's best excitatory frequency was systematically varied. The results revealed that shifts in the phase spectrum are encoded in at least 3 different ways by the peripheral auditory system of the bullfrog: 1) by changes in the degree of spike synchronization of fibers from both inner ear organs (the amphibian papilla and the basilar papilla) to the fundamental waveform period; 2) by changes in the shapes of period histograms of fibers from both organs; and 3) by changes in the spike rates of amphibian papilla fibers. The presence of phase sensitivity in the peripheral auditory system of the bullfrog indicates that information regarding the fine-temporal waveshape and the underlying phase spectrum of an acoustic signal is contained within the spike trains of VIIIth nerve fibers. Similar sensitivities to changes in the phase spectra and temporal waveshapes of acoustic signals may also be present in the peripheral auditory system of other vertebrates. Such studies could provide valuable insight into the role that phase spectra and temporal waveshape may play in bioacoustic communication.

摘要

在本研究中,我们检测了牛蛙(牛蛙)听神经纤维对等幅多谐波刺激的相位谱变化的敏感性,该刺激涵盖了牛蛙的听力范围。为了评估外周听觉相位敏感性,当系统地改变最接近一个单位最佳兴奋频率的单个谐波分量的相对相位角时,测量了第 VIII 对神经纤维反应特性的变化。结果表明,相位谱的变化至少通过牛蛙外周听觉系统的 3 种不同方式进行编码:1)通过来自两个内耳器官(两栖类乳头和基底乳头)的纤维到基本波形周期的尖峰同步程度的变化;2)通过来自两个器官的纤维的周期直方图形状的变化;3)通过两栖类乳头纤维的尖峰率的变化。牛蛙外周听觉系统中相位敏感性的存在表明,关于声信号的精细时间波形和潜在相位谱的信息包含在第 VIII 对神经纤维的尖峰序列中。其他脊椎动物的外周听觉系统可能也对声信号的相位谱和时间波形的变化具有类似的敏感性。此类研究可为相位谱和时间波形在生物声学通信中可能发挥的作用提供有价值的见解。

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