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声学和语音对比的自动与控制加工

Automatic and controlled processing of acoustic and phonetic contrasts.

作者信息

Sussman Elyse, Kujala Teija, Halmetoja Jaana, Lyytinen Heikki, Alku Paavo, Näätänen Risto

机构信息

Department of Neuroscience and Department of Otolaryngology, Albert Einstein College of Medicine, 1410 Pelham Parkway S., Bronx, NY, USA.

出版信息

Hear Res. 2004 Apr;190(1-2):128-40. doi: 10.1016/S0378-5955(04)00016-4.

Abstract

Changes in the temporal properties of the speech signal provide important cues for phoneme identification. An impairment or inability to detect such changes may adversely affect one's ability to understand spoken speech. The difference in meaning between the Finnish words tuli (fire) and tuuli (wind), for example, lies in the difference between the duration of the vowel /u/. Detecting changes in the temporal properties of the speech signal, therefore, is critical for distinguishing between phonemes and identifying words. In the current study, we tested whether detection of changes in speech sounds, in native Finnish speakers, would vary as a function of the position within the word that the informational changes occurred (beginning, middle, or end) by evaluating how length contrasts in segments of three-syllable Finnish pseudo-words and their acoustic correlates were discriminated. We recorded a combination of cortical components of event-related brain potentials (MMN, N2b, P3b) along with behavioral measures of the perception of the same sounds. It was found that speech sounds were not processed differently than non-speech sounds in the early stages of auditory processing indexed by MMN. Differences occurred only in later stages associated with controlled processes. The effects of position and attention on speech and non-speech stimuli are discussed.

摘要

语音信号时间特性的变化为音素识别提供了重要线索。检测此类变化的能力受损或无法检测到这种变化,可能会对一个人理解口语的能力产生不利影响。例如,芬兰语单词tuli(火)和tuuli(风)之间的意义差异就在于元音/u/的时长不同。因此,检测语音信号时间特性的变化对于区分音素和识别单词至关重要。在本研究中,我们通过评估三音节芬兰伪词片段中的长度对比及其声学相关性是如何被区分的,来测试以芬兰语为母语的人对语音变化的检测是否会因信息变化发生在单词中的位置(开头、中间或结尾)而有所不同。我们记录了事件相关脑电位的皮层成分组合(MMN、N2b、P3b)以及对相同声音感知的行为测量。结果发现,在由MMN索引的听觉处理早期阶段,语音与非语音的处理方式并无差异。差异仅出现在与受控过程相关的后期阶段。文中还讨论了位置和注意力对语音和非语音刺激的影响。

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