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比较 MEG 和 EEG 揭示语音时变包络脑追踪的潜力。

Comparing the potential of MEG and EEG to uncover brain tracking of speech temporal envelope.

机构信息

Laboratoire de Cartographie fonctionnelle du Cerveau, UNI - ULB Neuroscience Institute, Université libre de Bruxelles (ULB), Brussels, Belgium.

Laboratoire de Cartographie fonctionnelle du Cerveau, UNI - ULB Neuroscience Institute, Université libre de Bruxelles (ULB), Brussels, Belgium.

出版信息

Neuroimage. 2019 Jan 1;184:201-213. doi: 10.1016/j.neuroimage.2018.09.006. Epub 2018 Sep 8.

Abstract

During connected speech listening, brain activity tracks speech rhythmicity at delta (∼0.5 Hz) and theta (4-8 Hz) frequencies. Here, we compared the potential of magnetoencephalography (MEG) and high-density electroencephalography (EEG) to uncover such speech brain tracking. Ten healthy right-handed adults listened to two different 5-min audio recordings, either without noise or mixed with a cocktail-party noise of equal loudness. Their brain activity was simultaneously recorded with MEG and EEG. We quantified speech brain tracking channel-by-channel using coherence, and with all channels at once by speech temporal envelope reconstruction accuracy. In both conditions, speech brain tracking was significant at delta and theta frequencies and peaked in the temporal regions with both modalities (MEG and EEG). However, in the absence of noise, speech brain tracking estimated from MEG data was significantly higher than that obtained from EEG. Furthemore, to uncover significant speech brain tracking, recordings needed to be ∼3 times longer in EEG than MEG, depending on the frequency considered (delta or theta) and the estimation method. In the presence of noise, both EEG and MEG recordings replicated the previous finding that speech brain tracking at delta frequencies is stronger with attended speech (i.e., the sound subjects are attending to) than with the global sound (i.e., the attended speech and the noise combined). Other previously reported MEG findings were replicated based on MEG but not EEG recordings: 1) speech brain tracking at theta frequencies is stronger with attended speech than with the global sound, 2) speech brain tracking at delta frequencies is stronger in noiseless than noisy conditions, and 3) when noise is added, speech brain tracking at delta frequencies dampens less in the left hemisphere than in the right hemisphere. Finally, sources of speech brain tracking reconstructed from EEG data were systematically deeper and more posterior than those derived from MEG. The present study demonstrates that speech brain tracking is better seen with MEG than EEG. Quantitatively, EEG recordings need to be ∼3 times longer than MEG recordings to uncover significant speech brain tracking. As a consequence, MEG appears more suited than EEG to pinpoint subtle effects related to speech brain tracking in a given recording time.

摘要

在连贯语音聆听过程中,大脑活动会跟踪 delta(约 0.5 Hz)和 theta(4-8 Hz)频率的语音节奏。在这里,我们比较了脑磁图(MEG)和高密度脑电图(EEG)揭示这种语音大脑跟踪的潜力。10 名健康的右利手成年人分别聆听了两段时长 5 分钟的不同音频录音,一段没有噪声,另一段混合了相同响度的鸡尾酒会噪声。他们的大脑活动同时通过 MEG 和 EEG 进行记录。我们通过相干性逐通道量化了语音大脑跟踪,也通过所有通道的语音时间包络重建准确性进行了整体评估。在这两种情况下,在 delta 和 theta 频率下都存在显著的语音大脑跟踪,并且在两种模态(MEG 和 EEG)的时间区域达到峰值。然而,在没有噪声的情况下,从 MEG 数据估计的语音大脑跟踪明显高于从 EEG 获得的跟踪。此外,为了揭示显著的语音大脑跟踪,根据所考虑的频率(delta 或 theta)和估计方法,EEG 记录需要比 MEG 记录长约 3 倍。在存在噪声的情况下,EEG 和 MEG 记录都复制了先前的发现,即在 delta 频率下,与注意力集中的语音(即受试者正在关注的声音)相比,与全局声音(即注意力集中的语音和噪声的总和)相比,语音大脑跟踪更强。其他先前报告的 MEG 发现也基于 MEG 记录得到了复制,但不是 EEG 记录:1)在 theta 频率下,与全局声音相比,注意力集中的语音的语音大脑跟踪更强,2)在无噪声条件下,与噪声条件下相比,delta 频率下的语音大脑跟踪更强,3)当添加噪声时,与右侧相比,左侧 delta 频率的语音大脑跟踪阻尼更小。最后,从 EEG 数据重建的语音大脑跟踪源比从 MEG 数据重建的源更深、更靠后。本研究表明,与 EEG 相比,MEG 更能观察到语音大脑跟踪。从定量的角度来看,要揭示显著的语音大脑跟踪,EEG 记录需要比 MEG 记录长约 3 倍。因此,与 EEG 相比,MEG 更适合在给定的记录时间内发现与语音大脑跟踪相关的微妙效应。

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