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Two Distinct Neural Timescales for Predictive Speech Processing.预测性言语加工的两个不同神经时程。
Neuron. 2020 Jan 22;105(2):385-393.e9. doi: 10.1016/j.neuron.2019.10.019. Epub 2019 Dec 2.
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Musical Expertise Affects Audiovisual Speech Perception: Findings From Event-Related Potentials and Inter-trial Phase Coherence.音乐专业技能影响视听言语感知:来自事件相关电位和试次间相位一致性的研究结果。
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Theta and Gamma Bands Encode Acoustic Dynamics over Wide-Ranging Timescales.θ 频段和 γ 频段编码广泛时间尺度上的声动力学信息。
Cereb Cortex. 2020 Apr 14;30(4):2600-2614. doi: 10.1093/cercor/bhz263.
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Where is the cocktail party? Decoding locations of attended and unattended moving sound sources using EEG.鸡尾酒会在哪里?使用 EEG 解码有注意和无注意移动声源的位置。
Neuroimage. 2020 Jan 15;205:116283. doi: 10.1016/j.neuroimage.2019.116283. Epub 2019 Oct 17.
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Prominence of delta oscillatory rhythms in the motor cortex and their relevance for auditory and speech perception.大脑运动皮层中 delta 震荡节律的凸显及其与听觉和言语感知的关系。
Neurosci Biobehav Rev. 2019 Dec;107:136-142. doi: 10.1016/j.neubiorev.2019.09.012. Epub 2019 Sep 10.
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Semantic Context Enhances the Early Auditory Encoding of Natural Speech.语义语境增强了对自然语音的早期听觉编码。
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Prestimulus feedback connectivity biases the content of visual experiences.刺激前反馈连接会影响视觉体验的内容。
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Naturalistic Stimuli in Neuroscience: Critically Acclaimed.神经科学中的自然刺激:备受赞誉。
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预备δ波相位反应与自然语言理解能力相关。

Preparatory delta phase response is correlated with naturalistic speech comprehension performance.

作者信息

Li Jiawei, Hong Bo, Nolte Guido, Engel Andreas K, Zhang Dan

机构信息

Department of Psychology, School of Social Sciences, Tsinghua University, Room 334, Mingzhai Building, Beijing, China.

Tsinghua Laboratory of Brain and Intelligence, Tsinghua University, Beijing, China.

出版信息

Cogn Neurodyn. 2022 Apr;16(2):337-352. doi: 10.1007/s11571-021-09711-z. Epub 2021 Aug 31.

DOI:10.1007/s11571-021-09711-z
PMID:35401861
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8934811/
Abstract

While human speech comprehension is thought to be an active process that involves top-down predictions, it remains unclear how predictive information is used to prepare for the processing of upcoming speech information. We aimed to identify the neural signatures of the preparatory processing of upcoming speech. Participants selectively attended to one of two competing naturalistic, narrative speech streams, and a temporal response function (TRF) method was applied to derive event-related-like neural responses from electroencephalographic data. The phase responses to the attended speech at the delta band (1-4 Hz) were correlated with the comprehension performance of individual participants, with a latency of - 200-0 ms relative to the onset of speech amplitude envelope fluctuations over the fronto-central and left-lateralized parietal electrodes. The phase responses to the attended speech at the alpha band also correlated with comprehension performance but with a latency of 650-980 ms post-onset over the fronto-central electrodes. Distinct neural signatures were found for the attentional modulation, taking the form of TRF-based amplitude responses at a latency of 240-320 ms post-onset over the left-lateralized fronto-central and occipital electrodes. Our findings reveal how the brain gets prepared to process an upcoming speech in a continuous, naturalistic speech context.

摘要

虽然人类言语理解被认为是一个涉及自上而下预测的主动过程,但目前尚不清楚预测信息是如何用于为处理即将到来的言语信息做准备的。我们旨在识别即将到来的言语的准备性处理的神经特征。参与者选择性地关注两个相互竞争的自然主义叙事言语流中的一个,并应用时间响应函数(TRF)方法从脑电图数据中得出类似事件相关的神经反应。在δ频段(1-4赫兹)对所关注言语的相位反应与个体参与者的理解表现相关,相对于额中央和左侧顶叶电极上言语幅度包络波动的起始,潜伏期为-200至0毫秒。在α频段对所关注言语的相位反应也与理解表现相关,但在额中央电极上起始后潜伏期为650至980毫秒。发现了注意力调制的不同神经特征,表现为在左侧额中央和枕叶电极上起始后240至320毫秒潜伏期的基于TRF的幅度反应。我们的研究结果揭示了大脑如何在连续的自然主义言语情境中为处理即将到来的言语做好准备。