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源自颈内动脉的皮层反应表明六个月大婴儿的快速多特征听觉处理能力。

ICA-derived cortical responses indexing rapid multi-feature auditory processing in six-month-old infants.

作者信息

Piazza Caterina, Cantiani Chiara, Akalin-Acar Zeynep, Miyakoshi Makoto, Benasich April A, Reni Gianluigi, Bianchi Anna Maria, Makeig Scott

机构信息

Department of Electronics Information and Bioengineering, Politecnico di Milano, Milano, Italy; Bioengineering Lab, Scientific Institute IRCCS Eugenio Medea, Bosisio Parini, Lecco, Italy.

Department of Developmental Neuropsychology, Scientific Institute, IRCCS Eugenio Medea, Bosisio Parini, Lecco, Italy.

出版信息

Neuroimage. 2016 Jun;133:75-87. doi: 10.1016/j.neuroimage.2016.02.060. Epub 2016 Mar 2.

Abstract

The abilities of infants to perceive basic acoustic differences, essential for language development, can be studied using auditory event-related potentials (ERPs). However, scalp-channel averaged ERPs sum volume-conducted contributions from many cortical areas, reducing the functional specificity and interpretability of channel-based ERP measures. This study represents the first attempt to investigate rapid auditory processing in infancy using independent component analysis (ICA), allowing exploration of source-resolved ERP dynamics and identification of ERP cortical generators. Here, we recorded 60-channel EEG data in 34 typically developing 6-month-old infants during a passive acoustic oddball paradigm presenting 'standard' tones interspersed with frequency- or duration-deviant tones. ICA decomposition was applied to single-subject EEG data. The best-fitting equivalent dipole or bilaterally symmetric dipole pair was then estimated for each resulting independent component (IC) process using a four-layer infant head model. Similar brain-source ICs were clustered across subjects. Results showed ERP contributions from auditory cortex and multiple extra-auditory cortical areas (often, bilaterally paired). Different cortical source combinations contributed to the frequency- and duration-deviant ERP peak sequences. For ICs in an ERP-dominant source cluster located in or near the mid-cingulate cortex, source-resolved frequency-deviant response N2 latency and P3 amplitude at 6 months-of-age predicted vocabulary size at 20 months-of-age. The same measures for scalp channel F6 (though not for other frontal channels) showed similar but weaker correlations. These results demonstrate the significant potential of ICA analyses to facilitate a deeper understanding of the neural substrates of infant sensory processing.

摘要

婴儿感知基本声学差异的能力对于语言发展至关重要,可以使用听觉事件相关电位(ERP)进行研究。然而,头皮通道平均ERP汇总了许多皮质区域的容积传导贡献,降低了基于通道的ERP测量的功能特异性和可解释性。本研究首次尝试使用独立成分分析(ICA)来研究婴儿期的快速听觉处理,从而能够探索源分辨的ERP动态并识别ERP皮质发生器。在此,我们在34名发育正常的6个月大婴儿中记录了60通道脑电图数据,实验采用被动声学奇偶数范式,呈现穿插有频率或时长偏差音调的“标准”音调。ICA分解应用于单受试者脑电图数据。然后使用四层婴儿头部模型为每个产生的独立成分(IC)过程估计最佳拟合等效偶极子或双侧对称偶极子对。跨受试者将相似的脑源IC聚类。结果显示了来自听觉皮层和多个听觉外皮质区域(通常为双侧配对)的ERP贡献。不同的皮质源组合对频率和时长偏差ERP峰值序列有贡献。对于位于扣带中部皮层或其附近的ERP主导源簇中的IC,6个月大时源分辨的频率偏差反应N2潜伏期和P3波幅预测了20个月大时的词汇量。头皮通道F6(而非其他额叶通道)的相同测量显示出相似但较弱的相关性。这些结果证明了ICA分析在促进更深入理解婴儿感觉处理的神经基础方面的巨大潜力。

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