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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The processing of audio-visual speech: empirical and neural bases
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The processing of audio-visual speech: empirical and neural bases

机译:视听语音的处理:经验和神经基础

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In this selective review, I outline a number of ways in which seeing the talker affects auditory perception of speech, including, but not confined to, the McGurk effect. To date, studies suggest that all linguistic levels are susceptible to visual influence, and that two main modes of processing can be described: a complementary mode, whereby vision provides information more efficiently than hearing for some under-specified parts of the speech stream, and a correlated mode, whereby vision partially duplicates information about dynamic articulatory patterning. Cortical correlates of seen speech suggest that at the neurological as well as the perceptual level, auditory processing of speech is affected by vision, so that 'auditory speech regions' are activated by seen speech. The processing of natural speech, whether it is heard, seen or heard and seen, activates the perisylvian language regions (left > right). It is highly probable that activation occurs in a specific order. First, superior temporal, then inferior parietal and finally inferior frontal regions (left > right) are activated. There is some differentiation of the visual input stream to the core perisylvian language system, suggesting that complementary seen speech information makes special use of the visual ventral processing stream, while for correlated visual speech, the dorsal processing stream, which is sensitive to visual movement, may be relatively more involved.
机译:在这次选择性回顾中,我概述了看说话者会影响听觉语音感知的多种方式,包括但不限于麦古克效应。迄今为止,研究表明,所有语言水平都容易受到视觉影响,并且可以描述两种主要的处理模式:互补模式,即与语音相比,语音流中某些未指定部分的听觉更有效地提供了信息;以及一种相关模式,视觉可以部分复制有关动态关节构图的信息。所见语音的皮层相关性表明,在神经学和知觉水平上,语音的听觉处理都受到视觉的影响,因此“听觉语音区域”会被所见语音激活。无论是听到,看到还是听到和看到,自然语音的处理都会激活周围的语言区域(左>右)。激活很有可能会以特定顺序发生。首先,上颞叶,然后顶下壁,最后下额叶区域(左>右)被激活。视觉输入流与核心外围语言系统有所区别,表明互补的可见语音信息特别利用了视觉腹侧处理流,而对于相关的视觉语音,背侧处理流则对视觉运动敏感,可能相对更复杂。

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