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首页> 外文期刊>Journal of Cognitive Neuroscience >Sublexical Properties of Spoken Words Modulate Activity in Broca's Area but Not Superior Temporal Cortex: Implications for Models of Speech Recognition
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Sublexical Properties of Spoken Words Modulate Activity in Broca's Area but Not Superior Temporal Cortex: Implications for Models of Speech Recognition

机译:言语的词法属性调节Broca区域的活动,但不是颞颞皮层的活动:对语音识别模型的启示

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Many models of spoken word recognition posit that the acoustic stream is parsed into phoneme level units, which in turn activate larger representations [McClelland, J. L., & Elman, J. L. The TRACE model of speech perception. Cognitive Psychology, 18, 1–86, 1986], whereas others suggest that larger units of analysis are activated without the need for segmental mediation [Greenberg, S. A multitier theoretical framework for understanding spoken language. In S. Greenberg & W. A. Ainsworth (Eds.), Listening to speech: An auditory perspective (pp. 411–433). Mahwah, NJ: Erlbaum, 2005; Klatt, D. H. Speech perception: A model of acoustic-phonetic analysis and lexical access. Journal of Phonetics, 7, 279–312, 1979; Massaro, D. W. Preperceptual images, processing time, and perceptual units in auditory perception. Psychological Review, 79, 124–145, 1972]. Identifying segmental effects in the brain's response to speech may speak to this question. For example, if such effects were localized to relatively early processing stages in auditory cortex, this would support a model of speech recognition in which segmental units are explicitly parsed out. In contrast, segmental processes that occur outside auditory cortex may indicate that alternative models should be considered. The current fMRI experiment manipulated the phonotactic frequency (PF) of words that were auditorily presented in short lists while participants performed a pseudoword detection task. PF is thought to modulate networks in which phoneme level units are represented. The present experiment identified activity in the left inferior frontal gyrus that was positively correlated with PF. No effects of PF were found in temporal lobe regions. We propose that the observed phonotactic effects during speech listening reflect the strength of the association between acoustic speech patterns and articulatory speech codes involving phoneme level units. On the basis of existing lesion evidence, we interpret the function of this auditory–motor association as playing a role primarily in production. These findings are consistent with the view that phoneme level units are not necessarily accessed during speech recognition.
机译:许多口语单词识别模型都假定将声音流解析为音素级别单位,进而激活较大的表示形式[McClelland,J. L.和Elman,J. L.语音感知的TRACE模型。 《认知心理学》,第18卷,第1期至86页,1986年],而其他人则认为,无需进行分段调解就可以激活更大的分析单位[Greenberg,S.一种用于理解口语的多层理论框架。在S. Greenberg&W. A. Ainsworth(编辑)中,“听语音:听觉的角度”(第411-433页)。新泽西州马瓦(Mahwah,NJ):厄尔鲍姆(Erlbaum),2005年; Klatt,D. H.言语感知:声学分析和词汇访问的模型。语音学杂志,7,279–312,1979; Massaro,D. W.听觉感知前的图像,处理时间和感知单位。 [Psychological Review,79,124–145,1972]。识别大脑对语音的反应中的分段效应可能会引起这个问题。例如,如果这样的影响局限于听觉皮层的相对较早的处理阶段,这将支持语音识别模型,在该模型中明确地解析出分段单元。相反,发生在听觉皮层外部的节段过程可能表明应该考虑其他模型。当前的功能磁共振成像实验操作了参与者在执行伪单词检测任务时在听觉上出现在简短列表中的单词的变音频率(PF)。 PF被认为可以调制代表音素级别单位的网络。本实验确定了左下额回的活动与PF正相关。在颞叶区域未发现PF的影响。我们建议,在语音收听过程中观察到的音律效果可以反映声学语音模式与涉及音素级别单位的清晰语音代码之间的关联强度。根据现有的病变证据,我们将这种听觉-运动联想的功能解释为主要在生产中发挥作用。这些发现与在语音识别期间不一定访问音素级别单元的观点是一致的。

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