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微观状态 ERP 分析定位言语产生中的发音起始点。

Microstate ERP Analyses to Pinpoint the Articulatory Onset in Speech Production.

机构信息

Faculty of Psychology and Educational Science (FPSE), University of Geneva, 28 Boulevard du Pont d'Arve, 1205, Geneva, Switzerland.

出版信息

Brain Topogr. 2021 Jan;34(1):29-40. doi: 10.1007/s10548-020-00803-3. Epub 2020 Nov 8.

Abstract

The use of electroencephalography (EEG) to study overt speech production has increased substantially in the past 15 years and the alignment of evoked potential (ERPs) on the response onset has become an extremely useful method to target "latest" stages of speech production. Yet, response-locked ERPs raise a methodological issue: on which event should the point of alignment be placed? Response-locked ERPs are usually aligned to the vocal (acoustic) onset, although it is well known that articulatory movements may start up to a hundred milliseconds prior to the acoustic onset and that this "articulatory onset to acoustic onset interval" (AAI) depends on the phoneme properties. Given the previously reported difficulties to measure the AAI, the purpose of this study was to determine if the AAI could be reliably detected with EEG-microstates. High-density EEG was recorded during delayed speech production of monosyllabic pseudowords with four different onset consonants. Whereas the acoustic response onsets varied depending on the onset consonant, the response-locked spatiotemporal EEG analysis revealed a clear asynchrony of the same sequence of microstates across onset consonants. A specific microstate, the latest observed in the ERPs locked to the vocal onset, presented longer duration for phonemes with longer acoustic response onsets. Converging evidences seemed to confirm that this microstate may be related to the articulatory onset of motor execution: its scalp topography corresponded to those previously associated with muscle activity and source localization highlighted the involvement of motor areas. Finally, the analyses on the duration of such microstate in single trials further fit with the AAI intervals for specific phonemes reported in previous studies. These results thus suggest that a particular ERP-microstate is a reliable index of articulation onset and of the AAI.

摘要

过去 15 年来,脑电图(EEG)在研究口语产生方面的应用大大增加,而将诱发电位(ERPs)与反应起始对齐已成为一种非常有用的方法,可针对口语产生的“最新”阶段进行研究。然而,反应锁定的 ERPs 提出了一个方法学问题:应该将对齐点放在哪个事件上?反应锁定的 ERPs 通常与声音(声学)起始对齐,尽管众所周知,发音运动可能在声学起始之前提前一百毫秒开始,并且这个“发音起始到声学起始间隔”(AAI)取决于音素属性。鉴于先前报道的难以测量 AAI 的问题,本研究的目的是确定 AAI 是否可以通过 EEG 微观状态可靠地检测到。在延迟产生单音节伪词时,使用四个不同起始辅音记录高密度 EEG。虽然声学响应起始因起始辅音而异,但反应锁定的时空 EEG 分析揭示了跨起始辅音的微观状态序列的明显异步。特定的微观状态,在与声音起始锁定的 ERPs 中观察到的最晚微观状态,对于具有较长声学响应起始的音素呈现出更长的持续时间。有迹象表明,这一微观状态可能与运动执行的发音起始有关:其头皮拓扑结构与之前与肌肉活动相关的微观状态相对应,源定位突出了运动区域的参与。最后,对单个试验中这种微观状态持续时间的分析进一步符合先前研究中报道的特定音素的 AAI 间隔。这些结果表明,特定的 ERP-微观状态是发音起始和 AAI 的可靠指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee3c/7803690/4cb0331a6017/10548_2020_803_Fig1_HTML.jpg

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