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迈向言语感知的功能性神经解剖学。

Towards a functional neuroanatomy of speech perception.

作者信息

Hickok G, Poeppel D

机构信息

Department of Cognitive Sciences, University of California, Irvine, CA 92697, USA.

出版信息

Trends Cogn Sci. 2000 Apr;4(4):131-138. doi: 10.1016/s1364-6613(00)01463-7.

Abstract

The functional neuroanatomy of speech perception has been difficult to characterize. Part of the difficulty, we suggest, stems from the fact that the neural systems supporting 'speech perception' vary as a function of the task. Specifically, the set of cognitive and neural systems involved in performing traditional laboratory speech perception tasks, such as syllable discrimination or identification, only partially overlap those involved in speech perception as it occurs during natural language comprehension. In this review, we argue that cortical fields in the posterior-superior temporal lobe, bilaterally, constitute the primary substrate for constructing sound-based representations of speech, and that these sound-based representations interface with different supramodal systems in a task-dependent manner. Tasks that require access to the mental lexicon (i.e. accessing meaning-based representations) rely on auditory-to-meaning interface systems in the cortex in the vicinity of the left temporal-parietal-occipital junction. Tasks that require explicit access to speech segments rely on auditory-motor interface systems in the left frontal and parietal lobes. This auditory-motor interface system also appears to be recruited in phonological working memory.

摘要

言语感知的功能性神经解剖学一直难以确切描述。我们认为,部分困难源于支持“言语感知”的神经系统会因任务的不同而变化。具体而言,执行传统实验室言语感知任务(如音节辨别或识别)所涉及的认知和神经系统,与自然语言理解过程中发生的言语感知所涉及的认知和神经系统仅有部分重叠。在本综述中,我们认为双侧后上颞叶的皮质区域构成了构建基于声音的言语表征的主要基础,并且这些基于声音的表征以任务依赖的方式与不同的超模态系统相互作用。需要访问心理词典(即访问基于意义的表征)的任务依赖于左颞顶枕交界处附近皮质中的听觉到意义的接口系统。需要明确访问语音片段的任务依赖于左额叶和顶叶中的听觉运动接口系统。这种听觉运动接口系统似乎也参与了语音工作记忆。

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