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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Spatiotemporal representation of the pitch of harmonic complex tones in the auditory nerve.
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Spatiotemporal representation of the pitch of harmonic complex tones in the auditory nerve.

机译:听神经中谐波复合音调音调的时空表示。

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摘要

The pitch of harmonic complex tones plays an important role in speech and music perception and the analysis of auditory scenes, yet traditional rate-place and temporal models for pitch processing provide only an incomplete description of the psychophysical data. To test physiologically a model based on spatiotemporal pitch cues created by the cochlear traveling wave (Shamma, 1985), we recorded from single fibers in the auditory nerve of anesthetized cat in response to harmonic complex tones with missing fundamentals and equal-amplitude harmonics. We used the principle of scaling invariance in cochlear mechanics to infer the spatiotemporal response pattern to a given stimulus from a series of measurements made in a single fiber as a function of fundamental frequency F0. We found that spatiotemporal cues to resolved harmonics are available for F0 values between 350 and 1100 Hz and that these cues are more robust than traditional rate-place cues at high stimulus levels. The lower F0 limit is determined by the limited frequency selectivity of the cochlea, whereas the upper limit is caused by the degradation of phase locking to the stimulus fine structure at high frequencies. The spatiotemporal representation is consistent with the upper F0 limit to the perception of the pitch of complex tones with a missing fundamental, and its effectiveness does not depend on the relative phase between resolved harmonics. The spatiotemporal representation is thus consistent with key trends in human psychophysics.
机译:谐音的音调在语音和音乐感知以及听觉场景的分析中起着重要的作用,但是传统的音调处理的速率-位置和时间模型仅提供了不完整的心理数据描述。为了对基于耳蜗行波产生的时空音调提示的模型进行生理测试(Shamma,1985),我们从麻醉猫的听神经中的单纤维中记录了对基音和等振幅谐波缺失的谐波复杂音调的响应。我们使用了耳蜗力学中的定标不变性原理,根据在单根光纤上进行的一系列测量得出的时空响应模式,以给定的刺激作为基频F0的函数。我们发现,对于350至1100 Hz之间的F0值,可以使用时空提示来解析谐波,并且这些提示在高激励水平下比传统的速率-位置提示更健壮。 F0的下限由耳蜗的有限频率选择性决定,而上限由在高频时对刺激精细结构的锁相降低而引起。时空表示形式与基本音缺失的复杂音调音高感知的F0上限一致,其有效性不取决于解析谐波之间的相对相位。因此,时空表示与人类心理物理学的主要趋势一致。

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