Ventral and dorsal streams in the evolution of speech and language.

Frontiers in evolutionary neuroscience Pub Date : 2012-05-15 eCollection Date: 2012-01-01 DOI:10.3389/fnevo.2012.00007
Josef P Rauschecker
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引用次数: 123

Abstract

The brains of humans and old-world monkeys show a great deal of anatomical similarity. The auditory cortical system, for instance, is organized into a ventral and a dorsal pathway in both species. A fundamental question with regard to the evolution of speech and language (as well as music) is whether human and monkey brains show principal differences in their organization (e.g., new pathways appearing as a result of a single mutation), or whether species differences are of a more subtle, quantitative nature. There is little doubt about a similar role of the ventral auditory pathway in both humans and monkeys in the decoding of spectrally complex sounds, which some authors have referred to as auditory object recognition. This includes the decoding of speech sounds ("speech perception") and their ultimate linking to meaning in humans. The originally presumed role of the auditory dorsal pathway in spatial processing, by analogy to the visual dorsal pathway, has recently been conceptualized into a more general role in sensorimotor integration and control. Specifically for speech, the dorsal processing stream plays a role in speech production as well as categorization of phonemes during on-line processing of speech.

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语音和语言进化中的腹侧和背侧流。
人类和旧世界猴子的大脑在解剖学上有很大的相似性。例如,在这两个物种中,听觉皮层系统被组织成腹侧和背侧通路。关于言语和语言(以及音乐)的进化,一个基本问题是,人类和猴子的大脑是否在其组织中表现出主要差异(例如,由于单一突变而出现的新途径),或者物种差异是否具有更微妙的数量性。毫无疑问,人类和猴子的腹侧听觉通路在解码频谱复杂的声音中具有类似的作用,一些作者将其称为听觉对象识别。这包括语音的解码(“语音感知”)及其与人类意义的最终联系。最初推测的听觉背侧通路在空间处理中的作用,与视觉背侧通路类似,最近被概念化为在感觉运动整合和控制中更普遍的作用。特别是对于语音,在语音的在线处理过程中,背处理流在语音产生以及音素分类中发挥作用。
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