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安静环境下个体对语音的θ波段皮层同步化可预测噪声环境下的单词理解能力。

Individual theta-band cortical entrainment to speech in quiet predicts word-in-noise comprehension.

作者信息

Becker Robert, Hervais-Adelman Alexis

机构信息

Neurolinguistics, Department of Psychology, University of Zurich, Zurich 8050, Switzerland.

Neuroscience Center Zurich, University of Zurich and Eidgenössische Technische Hochschule Zurich, Zurich 8057, Switzerland.

出版信息

Cereb Cortex Commun. 2023 Jan 5;4(1):tgad001. doi: 10.1093/texcom/tgad001. eCollection 2023.

Abstract

Speech elicits brain activity time-locked to its amplitude envelope. The resulting speech-brain synchrony (SBS) is thought to be crucial to speech parsing and comprehension. It has been shown that higher speech-brain coherence is associated with increased speech intelligibility. However, studies depending on the experimental manipulation of speech stimuli do not allow conclusion about the causality of the observed tracking. Here, we investigate whether individual differences in the intrinsic propensity to track the speech envelope when listening to speech-in-quiet is predictive of individual differences in speech-recognition-in-noise, in an independent task. We evaluated the cerebral tracking of speech in source-localized magnetoencephalography, at timescales corresponding to the phrases, words, syllables and phonemes. We found that individual differences in syllabic tracking in right superior temporal gyrus and in left middle temporal gyrus (MTG) were positively associated with recognition accuracy in an independent words-in-noise task. Furthermore, directed connectivity analysis showed that this relationship is partially mediated by top-down connectivity from premotor cortex-associated with speech processing and active sensing in the auditory domain-to left MTG. Thus, the extent of SBS-even during clear speech-reflects an active mechanism of the speech processing system that may confer resilience to noise.

摘要

言语引发与言语幅度包络时间锁定的大脑活动。由此产生的言语-大脑同步(SBS)被认为对言语解析和理解至关重要。研究表明,更高的言语-大脑连贯性与言语可懂度的提高相关。然而,依赖于言语刺激实验操纵的研究无法得出关于所观察到的跟踪因果关系的结论。在此,我们调查在安静环境中听语音时,跟踪语音包络的内在倾向的个体差异是否能预测在独立任务中噪声环境下语音识别的个体差异。我们在源定位脑磁图中评估了与短语、单词、音节和音素相对应时间尺度上的语音大脑跟踪。我们发现,右颞上回和左颞中回(MTG)中音节跟踪的个体差异与独立的噪声中单词任务的识别准确率呈正相关。此外,定向连接性分析表明,这种关系部分由与言语处理和听觉领域主动感知相关的前运动皮层到左MTG的自上而下连接介导。因此,即使在清晰言语期间,SBS的程度也反映了言语处理系统的一种主动机制,该机制可能赋予对噪声的抵抗力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/802f/9883620/81b1ca3579d2/tgad001f1.jpg

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