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非人类哺乳动物(毛丝鼠)对音高的处理。

Processing pitch in a nonhuman mammal (Chinchilla laniger).

作者信息

Shofner William P, Chaney Megan

机构信息

Department of Speech and Hearing Sciences, Hearing Sciences, Indiana University, Bloomington, IN 47405, USA.

出版信息

J Comp Psychol. 2013 May;127(2):142-53. doi: 10.1037/a0029734. Epub 2012 Sep 17.

Abstract

Whether the mechanisms giving rise to pitch reflect spectral or temporal processing has long been debated. Generally, sounds having strong harmonic structures in their spectra have strong periodicities in their temporal structures. We found that when a wideband harmonic tone complex is passed through a noise vocoder, the resulting sound can have a harmonic structure with a large peak-to-valley ratio, but with little or no periodicity in the temporal structure. To test the role of harmonic structure in pitch perception for a nonhuman mammal, we measured behavioral responses to noise-vocoded tone complexes in chinchillas (Chinchilla laniger) using a stimulus generalization paradigm. Chinchillas discriminated either a harmonic tone complex or an iterated rippled noise from a 1-channel vocoded version of the tone complex. When tested with vocoded versions generated with 8, 16, 32, 64, and 128 channels, responses were similar to those of the 1-channel version. Behavioral responses could not be accounted for based on harmonic peak-to-valley ratio as the acoustic cue, but could be accounted for based on temporal properties of the autocorrelation functions such as periodicity strength or the height of the first peak. The results suggest that pitch perception does not arise through spectral processing in nonhuman mammals but rather through temporal processing. The conclusion that spectral processing contributes little to pitch in nonhuman mammals may reflect broader cochlear tuning than that described in humans.

摘要

音高产生的机制是反映频谱处理还是时间处理,长期以来一直存在争议。一般来说,频谱中具有强烈谐波结构的声音,其时间结构中也具有强烈的周期性。我们发现,当一个宽带谐波复音通过一个噪声声码器时,产生的声音可以具有一个峰谷比很大的谐波结构,但时间结构中几乎没有或没有周期性。为了测试谐波结构在非人类哺乳动物音高感知中的作用,我们使用刺激泛化范式测量了毛丝鼠(Chinchilla laniger)对噪声声码复音的行为反应。毛丝鼠能够区分谐波复音或迭代波纹噪声与该复音的单通道声码版本。当用8、16、32、64和128通道生成的声码版本进行测试时,反应与单通道版本相似。行为反应不能基于谐波峰谷比作为声学线索来解释,但可以基于自相关函数的时间特性来解释,如周期性强度或第一个峰值的高度。结果表明,非人类哺乳动物的音高感知不是通过频谱处理产生的,而是通过时间处理产生的。非人类哺乳动物中频谱处理对音高贡献不大的结论可能反映了比人类描述的更广泛的耳蜗调谐。

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J Assoc Res Otolaryngol. 2010 Sep;11(3):343-65. doi: 10.1007/s10162-010-0217-4. Epub 2010 May 4.
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A cascade autocorrelation model of pitch perception.一种音高感知的级联自相关模型。
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