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人类对语音的神经阿尔法反应是注意力控制的一种替代指标。

The Human Neural Alpha Response to Speech is a Proxy of Attentional Control.

作者信息

Wöstmann Malte, Lim Sung-Joo, Obleser Jonas

机构信息

Department of Psychology, University of Lübeck, Maria-Goeppert Straße 9a, 23562 Lübeck, Germany.

出版信息

Cereb Cortex. 2017 Jun 1;27(6):3307-3317. doi: 10.1093/cercor/bhx074.

Abstract

Human alpha (~10 Hz) oscillatory power is a prominent neural marker of cognitive effort. When listeners attempt to process and retain acoustically degraded speech, alpha power enhances. It is unclear whether these alpha modulations reflect the degree of acoustic degradation per se or the degradation-driven demand to a listener's attentional control. Using an irrelevant-speech paradigm and measuring the electroencephalogram (EEG), the current experiment demonstrates that the neural alpha response to speech is a surprisingly clear proxy of top-down control, entirely driven by the listening goals of attending versus ignoring degraded speech. While (n = 23) listeners retained the serial order of 9 to-be-recalled digits, one to-be-ignored sentence was presented. Distractibility of the to-be-ignored sentence parametrically varied in acoustic detail (noise-vocoding), with more acoustic detail of distracting speech increasingly disrupting listeners' serial memory recall. Where previous studies had observed decreases in parietal and auditory alpha power with more acoustic detail (of target speech), alpha power here showed the opposite pattern and increased with more acoustic detail in the speech distractor. In sum, the neural alpha response reflects almost exclusively a listener's goal, which is decisive for whether more acoustic detail facilitates comprehension (of attended speech) or enhances distraction (of ignored speech).

摘要

人类阿尔法(约10赫兹)振荡功率是认知努力的一个显著神经标志物。当听众试图处理并记住声学上退化的语音时,阿尔法功率会增强。目前尚不清楚这些阿尔法调制是反映了声学退化本身的程度,还是退化所驱动的听众注意力控制需求。通过使用无关语音范式并测量脑电图(EEG),当前实验表明,对语音的神经阿尔法反应是自上而下控制的一个惊人清晰的指标,完全由关注与忽略退化语音的聆听目标所驱动。当(n = 23)名听众记住9个待回忆数字的顺序时,呈现了一个待忽略的句子。待忽略句子的可干扰性在声学细节(噪声声码转换)方面呈参数变化,干扰语音的声学细节越多,就越会干扰听众的序列记忆回忆。以往研究观察到随着(目标语音的)声学细节增加,顶叶和听觉阿尔法功率会降低,而此处的阿尔法功率呈现出相反的模式,随着语音干扰物的声学细节增加而增加。总之,神经阿尔法反应几乎完全反映了听众的目标,这对于更多声学细节是促进(所关注语音的)理解还是增强(被忽略语音的)干扰起着决定性作用。

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