认知语音学:语音-语音学界面上特征的转换

IF 0.6 0 LANGUAGE & LINGUISTICS Biolinguistics Pub Date : 2018-03-15 DOI:10.5964/bioling.9089
Veno Volenec, C. Reiss
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引用次数: 17

摘要

我们提出,音韵学和语音学之间的界面是由一个转导过程介导的,该过程将音韵学计算的基本单元、特征转换为时间协调的神经肌肉模式,称为“真正的语音表征”,这些模式可由语音产生的运动系统直接解释。我们对界面的看法受到无物质生成语音假设以及从言语产生的心理语言学和语音模型中获得的见解的约束。为了将抽象语音单元转换为计划神经肌肉模式与通常与生理语音相关的语音产生生物力学区分开来,我们将这种界面理论称为“认知语音学”(CP)。根据Marr(1982/2010)的三层次方法描述了CP的内部工作,我们使用该方法构建了一个将形式音韵学与神经生物学活动联系起来的假设。介绍了支持CP各个部分的潜在神经生物学相关性。我们还认为,CP加强了对某些语音现象的研究,最显著的是共同发音,并表明一些通常被认为是语音的现象(如自然性和层次性)在CP中得到了更好的解释。
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Cognitive Phonetics: The Transduction of Distinctive Features at the Phonology-Phonetics Interface
We propose that the interface between phonology and phonetics is mediated by a transduction process that converts elementary units of phonological computation, features, into temporally coordinated neuromuscular patterns, called ‘True Phonetic Representations’, which are directly interpretable by the motor system of speech production. Our view of the interface is constrained by substance-free generative phonological assumptions and by insights gained from psycholinguistic and phonetic models of speech production. To distinguish transduction of abstract phonological units into planned neuromuscular patterns from the biomechanics of speech production usually associated with physiological phonetics, we have termed this interface theory ‘Cognitive Phonetics’ (CP). The inner workings of CP are described in terms of Marr’s (1982/2010) tri-level approach, which we used to construct a linking hypothesis relating formal phonology to neurobiological activity. Potential neurobiological correlates supporting various parts of CP are presented. We also argue that CP augments the study of certain phonetic phenomena, most notably coarticulation, and suggest that some phenomena usually considered phonological (e.g., naturalness and gradience) receive better explanations within CP.
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来源期刊
Biolinguistics
Biolinguistics LANGUAGE & LINGUISTICS-
CiteScore
1.50
自引率
0.00%
发文量
5
审稿时长
12 weeks
期刊最新文献
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