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人类听觉皮层中时间声音特征的表示。

Representation of temporal sound features in the human auditory cortex.

机构信息

Human Brain Research Laboratory, Department of Neurosurgery, The University of Iowa, 200 Hawkins Dr., Iowa City, IA 52242, USA.

出版信息

Rev Neurosci. 2011;22(2):187-203. doi: 10.1515/RNS.2011.016.

Abstract

Temporal information in acoustic signals is important for the perception of environmental sounds, including speech. This review focuses on several aspects of temporal processing within human auditory cortex and its relevance for the processing of speech sounds. Periodic non-speech sounds, such as trains of acoustic clicks and bursts of amplitude-modulated noise or tones, can elicit different percepts depending on the pulse repetition rate or modulation frequency. Such sounds provide convenient methodological tools to study representation of timing information in the auditory system. At low repetition rates of up to 8-10 Hz, each individual stimulus (a single click or a sinusoidal amplitude modulation cycle) within the sequence is perceived as a separate event. As repetition rates increase up to and above approximately 40 Hz, these events blend together, giving rise first to the percept of flutter and then to pitch. The extent to which neural responses of human auditory cortex encode temporal features of acoustic stimuli is discussed within the context of these perceptual classes of periodic stimuli and their relationship to speech sounds. Evidence for neural coding of temporal information at the level of the core auditory cortex in humans suggests possible physiological counterparts to perceptual categorical boundaries for periodic acoustic stimuli. Temporal coding is less evident in auditory cortical fields beyond the core. Finally, data suggest hemispheric asymmetry in temporal cortical processing.

摘要

声信号中的时间信息对于环境声音的感知很重要,包括语音。本篇综述聚焦于人类听觉皮层内的时间处理的几个方面及其与语音处理的相关性。周期性的非语音声音,如一连串的声咔嗒声和调幅噪声或音调的突发,可以根据脉冲重复率或调制频率产生不同的感觉。这些声音为研究听觉系统中时间信息的表示提供了方便的方法学工具。在低重复率(高达 8-10Hz)下,序列中每个单独的刺激(单个咔嗒声或正弦幅度调制周期)被感知为单独的事件。随着重复率增加到 40Hz 左右及以上,这些事件融合在一起,首先产生颤动的感觉,然后是音高的感觉。在这些周期性刺激的感知类别及其与语音的关系背景下,讨论了人类听觉皮层对声刺激时间特征的神经反应的程度。人类核心听觉皮层对时间信息的编码证据表明,周期性声刺激的感知类别边界可能存在生理对应物。在核心之外的听觉皮质区域,时间编码不太明显。最后,数据表明颞叶皮层处理存在半球不对称性。

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