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听觉-运动耦合影响语音编码。

Auditory-motor coupling affects phonetic encoding.

机构信息

Institute of Medical Psychology, Goethe University, Frankfurt, Germany.

Institute of Medical Psychology, Goethe University, Frankfurt, Germany.

出版信息

Brain Res. 2019 Aug 1;1716:39-49. doi: 10.1016/j.brainres.2017.11.022. Epub 2017 Nov 27.

Abstract

Recent studies have shown that moving in synchrony with auditory stimuli boosts attention allocation and verbal learning. Furthermore rhythmic tones are processed more efficiently than temporally random tones ('timing effect'), and this effect is increased when participants actively synchronize their motor performance with the rhythm of the tones, resulting in auditory-motor synchronization. Here, we investigated whether this applies also to sequences of linguistic stimuli (syllables). We compared temporally irregular syllable sequences with two temporally regular conditions where either the interval between syllable onsets (stimulus onset asynchrony, SOA) or the interval between the syllables' vowel onsets was kept constant. Entrainment to the stimulus presentation frequency (1 Hz) and event-related potentials were assessed in 24 adults who were instructed to detect pre-defined deviant syllables while they either pedaled or sat still on a stationary exercise bike. We found larger 1 Hz entrainment and P300 amplitudes for the SOA presentation during motor activity. Furthermore, the magnitude of the P300 component correlated with the motor variability in the SOA condition and 1 Hz entrainment, while in turn 1 Hz entrainment correlated with auditory-motor synchronization performance. These findings demonstrate that acute auditory-motor coupling facilitates phonetic encoding.

摘要

最近的研究表明,与听觉刺激同步运动可以增强注意力分配和言语学习。此外,与时间随机的音调相比,有节奏的音调处理起来更加高效(“时间效应”),而当参与者主动将他们的运动表现与音调的节奏同步时,这种效果会增强,从而实现听觉-运动同步。在这里,我们研究了这种情况是否也适用于语言刺激(音节)的序列。我们将时间不规则的音节序列与两种时间规则的条件进行了比较,其中一种条件是音节起始之间的间隔(刺激起始间隔,SOA)保持不变,另一种条件是音节元音起始之间的间隔保持不变。在 24 名成年人中评估了对刺激呈现频率(1Hz)的顺应性和事件相关电位,他们被指示在固定的健身自行车上踩踏或静坐时检测预定义的偏差音节。我们发现,在运动活动期间,SOA 呈现时的 1Hz 顺应性和 P300 振幅更大。此外,P300 成分的幅度与 SOA 条件下的运动变异性和 1Hz 顺应性相关,而 1Hz 顺应性与听觉-运动同步性能相关。这些发现表明,急性听觉-运动耦合有助于语音编码。

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