Moving rhythmically can facilitate naturalistic speech perception in a noisy environment.

IF 3.8 1区 生物学 Q1 BIOLOGY
Noémie Te Rietmolen, Kristof Strijkers, Benjamin Morillon
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引用次数: 0

Abstract

The motor system is known to process temporal information, and moving rhythmically while listening to a melody can improve auditory processing. In three interrelated behavioural experiments, we demonstrate that this effect translates to speech processing. Motor priming improves the efficiency of subsequent naturalistic speech-in-noise processing under specific conditions. (i) Moving rhythmically at the lexical rate (~1.8 Hz) significantly improves subsequent speech processing compared to moving at other rates, such as the phrasal or syllabic rates. (ii) The impact of such rhythmic motor priming is not influenced by whether it is self-generated or triggered by an auditory beat. (iii) Overt lexical vocalization, regardless of its semantic content, also enhances the efficiency of subsequent speech processing. These findings provide evidence for the functional role of the motor system in processing the temporal dynamics of naturalistic speech.

有节奏地移动可以促进在嘈杂环境中自然地感知语音。
众所周知,运动系统处理时间信息,在听旋律时有节奏地移动可以改善听觉处理。在三个相互关联的行为实验中,我们证明了这种效应转化为语言处理。在特定条件下,运动启动提高了后续自然噪声语音处理的效率。(1)与以其他速率(如短语或音节速率)运动相比,以词汇速率(~1.8 Hz)有节奏地运动显著改善了随后的语音处理。(ii)这种有节奏的运动启动的影响不受它是自我产生还是由听觉节拍触发的影响。(iii)无论其语义内容如何,显性词汇发声也会提高后续语音处理的效率。这些发现为运动系统在处理自然语言的时间动态过程中的功能作用提供了证据。
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来源期刊
CiteScore
7.90
自引率
4.30%
发文量
502
审稿时长
1 months
期刊介绍: Proceedings B is the Royal Society’s flagship biological research journal, accepting original articles and reviews of outstanding scientific importance and broad general interest. The main criteria for acceptance are that a study is novel, and has general significance to biologists. Articles published cover a wide range of areas within the biological sciences, many have relevance to organisms and the environments in which they live. The scope includes, but is not limited to, ecology, evolution, behavior, health and disease epidemiology, neuroscience and cognition, behavioral genetics, development, biomechanics, paleontology, comparative biology, molecular ecology and evolution, and global change biology.
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