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Time course of ERP generators to syllables in infants: A source localization study using age-appropriate brain templates

机译:ERP生成器到婴儿音节的时程:使用适合年龄的大脑模板进行的源定位研究

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Event-related potentials (ERPs) have become an important tool in the quest to understand how infants process perceptual information. Identification of the activation loci of the ERP generators is a technique that provides an opportunity to explore the neural substrates that underlie auditory processing. Nevertheless, as infant brain templates from healthy, non-clinical samples have not been available, the majority of source localization studies in infants have used non-realistic head models, or brain templates derived from older children or adults. Given the dramatic structural changes seen across infancy, all of which profoundly affect the electrical fields measured with EEG, it is important to use individual MRIs or age-appropriate brain templates and parameters to explore the localization and time course of auditory ERP sources. In this study 6-month-old infants were presented with a passive oddball paradigm using consonant-vowel (CV) syllables that differed in voice onset time. Dense-array EEG/ERPs were collected while the infants were awake and alert. In addition, MRIs were acquired during natural non-sedated sleep for a subset of the sample. Discrete dipole and distributed source models were mapped onto individual and averaged infant MRIs. The CV syllables elicited a positive deflection at about 200. ms followed by a negative deflection that peaked around 400. ms. The source models generated placed the dipoles at temporal areas close to auditory cortex for both positive and negative responses. Notably, an additional dipole for the positive peak was localized at the frontal area, at the anterior cingulate cortex (ACC) level. ACC activation has been reported in adults, but has not, to date, been reported in infants during processing of speech-related signals. The frontal ACC activation was earlier but smaller in amplitude than the left and right auditory temporal activations. These results demonstrate that in infancy the ERP generators to CV syllables are localized in cortical areas similar to that reported in adults, but exhibit a notably different temporal course. Specifically, ACC activation in infants significantly precedes auditory temporal activation, whereas in adults ACC activation follows that of temporal cortex. We suggest that these timing differences could be related to current maturational changes, to the ongoing construction of language-specific phonetic maps, and/or to more sensitive attentional switching as a response to speech signals in infancy.
机译:与事件相关的电位(ERP)已成为寻求了解婴儿如何处理感知信息的重要工具。 ERP发生器的激活基因座的识别是一项技术,可为探索听觉处理基础的神经基质提供机会。然而,由于无法获得来自健康,非临床样本的婴儿脑模板,因此婴儿中的大多数源定位研究都使用了不真实的头部模型,或源自年龄较大的儿童或成人的脑模板。考虑到婴儿期发生的巨大结构变化,所有这些都会深刻影响用脑电图测量的电场,因此重要的是使用单独的MRI或适合年龄的大脑模板和参数来探索听觉ERP来源的定位和时程。在这项研究中,使用语音发声时间不同的辅音元音(CV)音节向6个月大的婴儿提供了被动的奇数球范例。在婴儿清醒和警觉的同时收集了密集的脑电图/ ERP。另外,在自然的非镇静睡眠过程中,对一部分样本进行了MRI。离散偶极子和分布式源模型被映射到单独的和平均的婴儿MRIs上。 CV音节在大约200. ms处引起正偏,然后在400. ms处达到峰值的负偏。产生的源模型将偶极子放置在靠近听觉皮层的时间区域,以产生正响应和负响应。值得注意的是,正峰的另一个偶极子位于额叶前扣带回皮质(ACC)的额叶区域。在成年人中已经报道了ACC激活,但是迄今为止,在语音相关信号的处理过程中尚未在婴儿中报道过ACC激活。额叶ACC的激活比左,右听觉颞叶的激活更早,但幅度较小。这些结果表明,在婴儿期,CV音节的ERP生成器位于皮质区域,类似于成年人所报道的那样,但是表现出明显不同的时程。具体而言,婴儿的ACC激活明显先于听觉的颞叶激活,而在成年人中,ACC的激活遵循颞皮质的激活。我们建议,这些时间上的差异可能与当前的成熟度变化,与特定语言的语音地图的持续构建有关,和/或与对婴儿语音信号的响应更加敏感的注意力切换有关。

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