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使用选择性听觉训练范式的两种音高编码机制的证据。

Evidence for two pitch encoding mechanisms using a selective auditory training paradigm.

作者信息

Grimault Nicolas, Micheyl Christophe, Carlyon Robert P, Collet Lionel

机构信息

UPRESA CNRS 5020, Pavillon Université Hôpital E Herriot, Lyon, France.

出版信息

Percept Psychophys. 2002 Feb;64(2):189-97. doi: 10.3758/bf03195785.

Abstract

The neural mechanisms underlying the perception of pitch, a sensory attribute of paramount importance in hearing, have been a matter of debate for over a century. A question currently at the heart of the debate is whether the pitch of all harmonic complex tones can be determined by the auditory system's using a single mechanism, or whether two different neural mechanisms are involved, depending on the stimulus conditions. When the harmonics are widely spaced, as is the case at high fundamental frequencies (FOs), and/or when the frequencies of the harmonics are low, the frequency components of the sound fall in different peripheral auditory channels and are then "resolved" by the peripheral auditory system. In contrast, at low F0s, or when the harmonics are high in frequency, several harmonics interact within the passbands of the same auditory filters, being thus "unresolved" by the peripheral auditory system. The idea that more than one mechanism mediates the encoding of pitch depending on the resolvability status of the harmonics was investigated here by testing for transfer of learning in F0 discrimination between different stimulus conditions involving either resolved or unresolved harmonics after specific training in one of these conditions. The results, which show some resolvability-specificity of F0-discrimination learning, support the hypothesis that two different underlying mechanisms mediate the encoding of the F0 of resolved and unresolved harmonics.

摘要

音高作为听觉中至关重要的一种感官属性,其背后的神经机制在一个多世纪以来一直是争论的焦点。当前争论的核心问题是,所有谐波复合音的音高是否都能由听觉系统通过单一机制来确定,还是取决于刺激条件,涉及两种不同的神经机制。当谐波间隔较大时,如在高基频(FO)情况下,和/或当谐波频率较低时,声音的频率成分落在不同的外周听觉通道中,然后由外周听觉系统“解析”。相反,在低FO时,或当谐波频率较高时,几个谐波在同一听觉滤波器的通带内相互作用,因此未被外周听觉系统“解析”。本文通过测试在其中一种条件下进行特定训练后,不同刺激条件(涉及已解析或未解析谐波)之间F0辨别学习的迁移情况,研究了不止一种机制根据谐波的可解析状态介导音高编码的观点。结果表明F0辨别学习具有一定的可解析特异性,支持了两种不同的潜在机制介导已解析和未解析谐波F0编码的假设。

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