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Mu wave suppression during the perception of meaningless syllables: EEG evidence of motor recruitment.

机译:在无意义音节感知过程中的Mu波抑制:脑电运动恢复的证据。

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Motor involvement in speech perception has been recently studied using a variety of techniques. In the current study, EEG measurements from Cz, C3 and C4 electrodes were used to examine the relative power of the mu rhythm (i.e., 8-13 Hz) in response to various audio-visual speech and non-speech stimuli, as suppression of these rhythms is considered an index of 'mirror neuron' (i.e., motor) activity. Fourteen adult native English speaking females watched and listened to nine audio-video stimuli clips assembled from three different auditory stimuli (speech, noise, and pure tone) combined with three different video stimuli (speech, noise, and kaleidoscope-made from scrambling an image from the visual speech). Relative to the noise-noise (baseline condition), all visual speech conditions resulted in significant levels of suppression, a finding that is consistent with previous reports of mirror activity to visual speech and mu suppression to 'biological' stimuli. None of the non-speech conditions or conditions in which speech was presented via audition only resulted in any significant suppression of the mu rhythm in this population. Thus, visual speech perception appears to be more closely associated with motor activity than acoustic speech perception. It is postulated that in this study, the processing demands incurred by the task were insufficient for inducing significant mu suppression via acoustic speech only. The findings are discussed in theoretical contexts of speech perception and the mirror system. We suggest that this technique may offer a cost-efficient, non-invasive technique for measuring motor activity during speech perception.
机译:最近已经使用多种技术研究了运动参与语音感知。在当前的研究中,使用Cz,C3和C4电极的EEG测量值来检查mu节奏(即8-13 Hz)对各种视听语音和非语音刺激的响应的相对功率,以抑制这些节律被认为是“镜神经元”(即运动)活动的指标。 14位以英语为母语的成年成年女性观看并收听了由三种不同的听觉刺激(语音,噪声和纯音)和三种不同的视频刺激(语音,噪声和万花筒)组合而成的9个音视频刺激片段从视觉演讲)。相对于噪声(基准条件),所有视觉语音条件均导致显着水平的抑制,这一发现与先前关于视镜活动和对“生物”刺激的mu抑制的报道一致。非语音条件或通过听觉表达语音的条件都不会导致该人群的音乐节律受到任何明显的抑制。因此,视觉语音感知似乎比声学语音感知与运动活动更紧密相关。据推测,在这项研究中,任务所引起的处理需求不足以仅通过声学语音来诱导显着的mu抑制。在语音感知和镜像系统的理论背景下讨论了这些发现。我们建议该技术可能提供一种经济高效的非侵入性技术,用于在语音感知过程中测量运动活动。

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