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Quantitative evaluation of lexical status, word frequency, and neighborhood density as context effects in spoken word recognition

机译:定量评估词汇状态,单词频率和邻域密度作为口语单词识别中的上下文效应

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摘要

Listeners identified a phonetically balanced set of consonant-vowel-consonant (CVC) words and nonsense syllables in noise at four signal-to-noise ratios. The identification scores for phonemes and syllables were analyzed using the j-factor model [Boothroyd and Nittrouer, J. Acoust. Soc. Am. 84, 101-114 (1988)], which measures the perceptual independence of the parts of a whole. Results indicate that nonsense CVC syllables are perceived as having three independent phonemes, while words show j = 2.34 independent units. Among the words, high-frequency words are perceived as having significantly fewer independent units than low-frequency words. Words with dense phonetic neighborhoods are perceived as having 0.5 more independent units than words with sparse neighborhoods. The neighborhood effect in these data is due almost entirely to density as determined by the initial consonant and vowel, demonstrated in analyses by subjects and items, and correlation analyses of syllable recognition with the neighborhood activation model [Luce and Pisoni, Ear Hear. 19, 1-36 (1998)]. The j factors are interpreted as measuring increased efficiency of the perception of word-final consonants of words in sparse neighborhoods during spoken word recognition.
机译:听众在四个信噪比下,识别出语音中的一组语音平衡的辅音,元音辅音(CVC)词和无意义的音节。使用j因子模型[Boothroyd and Nittrouer,J. Acoust。 Soc。上午。 84,101-114(1988)],它衡量了整体各部分的感知独立性。结果表明,无意义的CVC音节被认为具有三个独立音素,而单词显示j = 2.34个独立单位。在这些词中,高频词被认为具有比低频词少得多的独立单元。具有密集语音邻域的单词被认为比具有稀疏邻域的单词具有0.5个独立的单元。这些数据中的邻域效应几乎完全归因于由初始辅音和元音确定的密度,这在主题和项目分析以及音节识别与邻域激活模型的相关分析中得到了证明[Luce and Pisoni,Ear Hear。 19,1-36(1998)]。 j因子被解释为在口语单词识别期间测量稀疏邻域中单词最终辅音的感知效率的提高。

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