Institute of Neuroscience and Psychology, University of Glasgow, Glasgow, United Kingdom.
Institute for Biomagnetism and Biosignalanalysis, University of Münster, Münster, Germany.
PLoS Biol. 2018 Mar 12;16(3):e2004473. doi: 10.1371/journal.pbio.2004473. eCollection 2018 Mar.
During online speech processing, our brain tracks the acoustic fluctuations in speech at different timescales. Previous research has focused on generic timescales (for example, delta or theta bands) that are assumed to map onto linguistic features such as prosody or syllables. However, given the high intersubject variability in speaking patterns, such a generic association between the timescales of brain activity and speech properties can be ambiguous. Here, we analyse speech tracking in source-localised magnetoencephalographic data by directly focusing on timescales extracted from statistical regularities in our speech material. This revealed widespread significant tracking at the timescales of phrases (0.6-1.3 Hz), words (1.8-3 Hz), syllables (2.8-4.8 Hz), and phonemes (8-12.4 Hz). Importantly, when examining its perceptual relevance, we found stronger tracking for correctly comprehended trials in the left premotor (PM) cortex at the phrasal scale as well as in left middle temporal cortex at the word scale. Control analyses using generic bands confirmed that these effects were specific to the speech regularities in our stimuli. Furthermore, we found that the phase at the phrasal timescale coupled to power at beta frequency (13-30 Hz) in motor areas. This cross-frequency coupling presumably reflects top-down temporal prediction in ongoing speech perception. Together, our results reveal specific functional and perceptually relevant roles of distinct tracking and cross-frequency processes along the auditory-motor pathway.
在在线言语处理过程中,我们的大脑会在不同的时间尺度上跟踪言语的声学波动。以前的研究集中在通用的时间尺度(例如,delta 或 theta 频段)上,这些频段被认为与韵律或音节等语言特征有关。然而,由于说话模式的个体间高度可变性,大脑活动和言语特征之间的这种通用关联可能是模糊的。在这里,我们通过直接关注从我们的言语材料的统计规律中提取的时间尺度,来分析源定位脑磁图数据中的言语跟踪。这揭示了在短语(0.6-1.3 Hz)、单词(1.8-3 Hz)、音节(2.8-4.8 Hz)和音素(8-12.4 Hz)时间尺度上广泛存在的显著跟踪。重要的是,当检查其感知相关性时,我们发现在左前运动皮层(PM)在短语尺度上以及在左颞中回在单词尺度上,对于正确理解的试验有更强的跟踪。使用通用频段进行的对照分析证实,这些效应是我们刺激中言语规律的特异性。此外,我们发现,在运动区域中,在短语时间尺度上的相位与 beta 频带(13-30 Hz)的功率耦合。这种跨频耦合大概反映了在进行中的言语感知中自上而下的时间预测。总之,我们的结果揭示了听觉-运动通路中不同跟踪和跨频过程的特定功能和感知相关作用。