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灵长类动物听觉皮层中参与复杂声音处理的谐波模板神经元。

Harmonic template neurons in primate auditory cortex underlying complex sound processing.

作者信息

Feng Lei, Wang Xiaoqin

机构信息

Laboratory of Auditory Neurophysiology, Department of Biomedical Engineering, Johns Hopkins University School of Medicine, Baltimore, MD 21205.

Laboratory of Auditory Neurophysiology, Department of Biomedical Engineering, Johns Hopkins University School of Medicine, Baltimore, MD 21205

出版信息

Proc Natl Acad Sci U S A. 2017 Jan 31;114(5):E840-E848. doi: 10.1073/pnas.1607519114. Epub 2017 Jan 17.

Abstract

Harmonicity is a fundamental element of music, speech, and animal vocalizations. How the auditory system extracts harmonic structures embedded in complex sounds and uses them to form a coherent unitary entity is not fully understood. Despite the prevalence of sounds rich in harmonic structures in our everyday hearing environment, it has remained largely unknown what neural mechanisms are used by the primate auditory cortex to extract these biologically important acoustic structures. In this study, we discovered a unique class of harmonic template neurons in the core region of auditory cortex of a highly vocal New World primate, the common marmoset (Callithrix jacchus), across the entire hearing frequency range. Marmosets have a rich vocal repertoire and a similar hearing range to that of humans. Responses of these neurons show nonlinear facilitation to harmonic complex sounds over inharmonic sounds, selectivity for particular harmonic structures beyond two-tone combinations, and sensitivity to harmonic number and spectral regularity. Our findings suggest that the harmonic template neurons in auditory cortex may play an important role in processing sounds with harmonic structures, such as animal vocalizations, human speech, and music.

摘要

和声是音乐、语音及动物发声的基本要素。听觉系统如何提取复杂声音中蕴含的和声结构并利用它们形成一个连贯统一的实体,目前尚未完全明确。尽管在我们日常的听觉环境中富含和声结构的声音很普遍,但灵长类动物听觉皮层利用何种神经机制来提取这些具有生物学重要性的声学结构,在很大程度上仍是未知的。在本研究中,我们在一种高度发声的新大陆灵长类动物——普通狨猴(Callithrix jacchus)听觉皮层的核心区域,发现了一类独特的和声模板神经元,其分布于整个听觉频率范围。狨猴拥有丰富的发声 repertoire,且听觉范围与人类相似。这些神经元对和声复杂声音的反应表现出相对于非和声声音的非线性增强、对特定和声结构(超过双音组合)的选择性以及对和声数量和频谱规律性的敏感性。我们的研究结果表明,听觉皮层中的和声模板神经元可能在处理具有和声结构的声音(如动物发声、人类语音和音乐)方面发挥重要作用。

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