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追溯人类听觉系统中范畴性言语感知的出现。

Tracing the emergence of categorical speech perception in the human auditory system.

机构信息

Institute for Intelligent Systems, University of Memphis, Memphis, TN 38105, USA.

出版信息

Neuroimage. 2013 Oct 1;79:201-12. doi: 10.1016/j.neuroimage.2013.04.093. Epub 2013 May 3.

Abstract

Speech perception requires the effortless mapping from smooth, seemingly continuous changes in sound features into discrete perceptual units, a conversion exemplified in the phenomenon of categorical perception. Explaining how/when the human brain performs this acoustic-phonetic transformation remains an elusive problem in current models and theories of speech perception. In previous attempts to decipher the neural basis of speech perception, it is often unclear whether the alleged brain correlates reflect an underlying percept or merely changes in neural activity that covary with parameters of the stimulus. Here, we recorded neuroelectric activity generated at both cortical and subcortical levels of the auditory pathway elicited by a speech vowel continuum whose percept varied categorically from /u/ to /a/. This integrative approach allows us to characterize how various auditory structures code, transform, and ultimately render the perception of speech material as well as dissociate brain responses reflecting changes in stimulus acoustics from those that index true internalized percepts. We find that activity from the brainstem mirrors properties of the speech waveform with remarkable fidelity, reflecting progressive changes in speech acoustics but not the discrete phonetic classes reported behaviorally. In comparison, patterns of late cortical evoked activity contain information reflecting distinct perceptual categories and predict the abstract phonetic speech boundaries heard by listeners. Our findings demonstrate a critical transformation in neural speech representations between brainstem and early auditory cortex analogous to an acoustic-phonetic mapping necessary to generate categorical speech percepts. Analytic modeling demonstrates that a simple nonlinearity accounts for the transformation between early (subcortical) brain activity and subsequent cortical/behavioral responses to speech (>150-200 ms) thereby describing a plausible mechanism by which the brain achieves its acoustic-to-phonetic mapping. Results provide evidence that the neurophysiological underpinnings of categorical speech are present cortically by ~175 ms after sound enters the ear.

摘要

言语感知需要将声音特征的平滑、看似连续的变化毫不费力地映射到离散的感知单元中,这一转换在范畴感知现象中得到了例证。解释人类大脑如何/何时执行这种声学-语音转换仍然是当前言语感知模型和理论中的一个难以捉摸的问题。在以前试图破译言语感知的神经基础的尝试中,通常不清楚所谓的大脑相关性是否反映了潜在的感知,还是仅仅反映了与刺激参数共变的神经活动变化。在这里,我们记录了由言语元音连续体引起的听觉通路的皮质和皮质下水平产生的神经电活动,该连续体的感知从/u/到/a/呈范畴性变化。这种综合方法使我们能够描述各种听觉结构如何编码、转换,并最终呈现言语材料的感知,以及将反映刺激声学变化的大脑反应与反映真实内在感知的大脑反应区分开来。我们发现,脑干的活动与言语波形的特性具有惊人的一致性,反映了言语声学的渐进变化,但不反映行为报告的离散语音类别。相比之下,晚期皮质诱发活动的模式包含反映不同感知类别的信息,并预测听众听到的抽象语音边界。我们的发现表明,在脑干和早期听觉皮层之间,神经言语表示发生了关键的转换,类似于产生范畴性言语感知所需的声学-语音映射。分析模型表明,一个简单的非线性可以解释早期(皮质下)大脑活动与随后的皮质/行为对言语的反应之间的转换(>150-200 毫秒),从而描述了大脑实现其声学-语音映射的一种合理机制。结果提供了证据,表明范畴性言语的神经生理学基础在声音进入耳朵后约 175 毫秒时就在皮质中存在。

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