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与非同步或无节奏节拍相比,先前同步节拍对口语单词识别的增强作用。

Spoken Word Recognition Enhancement Due to Preceding Synchronized Beats Compared to Unsynchronized or Unrhythmic Beats.

作者信息

Sidiras Christos, Iliadou Vasiliki, Nimatoudis Ioannis, Reichenbach Tobias, Bamiou Doris-Eva

机构信息

Clinical Psychoacoustics Laboratory, Neuroscience Division, 3rd Psychiatric Department, Aristotle University of ThessalonikiThessaloniki, Greece.

Department of Bioengineering, Imperial College LondonLondon, United Kingdom.

出版信息

Front Neurosci. 2017 Jul 18;11:415. doi: 10.3389/fnins.2017.00415. eCollection 2017.

Abstract

The relation between rhythm and language has been investigated over the last decades, with evidence that these share overlapping perceptual mechanisms emerging from several different strands of research. The dynamic Attention Theory posits that neural entrainment to musical rhythm results in synchronized oscillations in attention, enhancing perception of other events occurring at the same rate. In this study, this prediction was tested in 10 year-old children by means of a psychoacoustic speech recognition in babble paradigm. It was hypothesized that rhythm effects evoked via a short isochronous sequence of beats would provide optimal word recognition in babble when beats and word are in sync. We compared speech recognition in babble performance in the presence of isochronous and in sync vs. non-isochronous or out of sync sequence of beats. Results showed that (a) word recognition was the best when rhythm and word were in sync, and (b) the effect was not uniform across syllables and gender of subjects. Our results suggest that pure tone beats affect speech recognition at early levels of sensory or phonemic processing.

摘要

在过去几十年里,人们对节奏与语言之间的关系进行了研究,多项不同研究得出的证据表明,二者共享重叠的感知机制。动态注意理论认为,对音乐节奏的神经夹带会导致注意力同步振荡,增强对以相同速率发生的其他事件的感知。在本研究中,通过在嘈杂环境中的心理声学语音识别范式,对10岁儿童进行了这一预测的测试。研究假设,当节拍与单词同步时,由短等时节拍序列引发的节奏效应将在嘈杂环境中提供最佳的单词识别效果。我们比较了在存在等时且同步与非等时或不同步节拍序列的情况下,嘈杂环境中的语音识别表现。结果表明:(a)当节奏与单词同步时,单词识别效果最佳;(b)该效应在不同音节和受试者性别中并不一致。我们的结果表明,纯音节拍在感觉或音素处理的早期阶段会影响语音识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfb6/5513984/e503c2c5a9cc/fnins-11-00415-g0001.jpg

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