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Spatiotemporal Dynamics of the Processing of Spoken Inflected and Derived Words: A Combined EEG and MEG Study

机译:语音变形词和派生词的时空动态:EEG和MEG组合研究

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摘要

The spatiotemporal dynamics of the neural processing of spoken morphologically complex words are still an open issue. In the current study, we investigated the time course and neural sources of spoken inflected and derived words using simultaneously recorded electroencephalography (EEG) and magnetoencephalography (MEG) responses. Ten participants (native speakers) listened to inflected, derived, and monomorphemic Finnish words and judged their acceptability. EEG and MEG responses were time-locked to both the stimulus onset and the critical point (suffix onset for complex words, uniqueness point for monomorphemic words). The ERP results showed that inflected words elicited a larger left-lateralized negativity than derived and monomorphemic words approximately 200 ms after the critical point. Source modeling of MEG responses showed one bilateral source in the superior temporal area ∼100 ms after the critical point, with derived words eliciting stronger source amplitudes than inflected and monomorphemic words in the right hemisphere. Source modeling also showed two sources in the temporal cortex approximately 200 ms after the critical point. There, inflected words showed a more systematic pattern in source locations and elicited temporally distinct source activity in comparison to the derived word condition. The current results provide electrophysiological evidence for at least partially distinct cortical processing of spoken inflected and derived words. In general, the results support models of morphological processing stating that during the recognition of inflected words, the constituent morphemes are accessed separately. With regard to derived words, stem and suffix morphemes might be at least initially activated along with the whole word representation.
机译:口头形态复杂的单词的神经处理的时空动态仍然是一个未解决的问题。在当前的研究中,我们使用同时​​记录的脑电图(EEG)和磁脑电图(MEG)响应来研究口语变化和衍生词的时程和神经源。十名参与者(母语为母语)听了芬兰语中的变形,衍生和单态词,并判断了其可接受性。 EEG和MEG响应在刺激发作和临界点(复杂词的后缀发作,单态词的唯一点)上都具有时间锁定。 ERP的结果表明,在临界点后约200µms内,与衍生词和单态词相比,与衍生词和单态词相比,词形变化产生更大的左偏否定性。 MEG响应的源模型显示,在临界点后约100µms内,在上颞叶区域有一个双边源,派生词比右半球的弯曲词和单态词引起的源振幅更大。源模型还显示了在临界点后约200µms的颞叶皮质中的两个源。在那里,与衍生词条件相比,词变词在来源位置显示出更加系统的模式,并在时间上引起了明显的来源活动。目前的结果提供了至少部分不同的皮层处理语音拐弯和派生词的电生理证据。通常,结果支持形态学处理模型,该模型指出在识别出变形词时要分别访问构成语素。关于派生词,词干和后缀语素可能至少在整个词表示形式最初被激活。

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