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与句子处理相关的大脑活动的时程和空间分布。

The time-course and spatial distribution of brain activity associated with sentence processing.

机构信息

Department of Radiology, The Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.

出版信息

Neuroimage. 2012 Apr 2;60(2):1139-48. doi: 10.1016/j.neuroimage.2012.01.030. Epub 2012 Jan 9.

DOI:10.1016/j.neuroimage.2012.01.030
PMID:22248581
Abstract

Sentence comprehension involves a host of highly interrelated processes, including syntactic parsing, semantic composition, and pragmatic inferencing. In neuroimaging, a primary paradigm for examining the brain bases of sentence processing has been to compare brain activity elicited by sentences versus unstructured lists of words. These studies commonly find an effect of increased activity for sentences in the anterior temporal lobes (aTL). Together with neuropsychological data, these findings have motivated the hypothesis that the aTL is engaged in sentence level combinatorics. Combinatoric processing during language comprehension, however, occurs within tens and hundreds of milliseconds, i.e., at a time-scale much faster than the temporal resolution of hemodynamic measures. Here, we examined the time-course of sentence-level processing using magnetoencephalography (MEG) to better understand the temporal profile of activation in this common paradigm and to test a key prediction of the combinatoric hypothesis: because sentences are interpreted incrementally, word-by-word, activity associated with basic linguistic combinatorics should be time-locked to word-presentation. Our results reveal increased anterior temporal activity for sentences compared to word lists beginning approximately 250 ms after word onset. We also observed increased activation in a network of other brain areas, extending across posterior temporal, inferior frontal, and ventral medial areas. These findings confirm a key prediction of the combinatoric hypothesis for the aTL and further elucidate the spatio-temporal characteristics of sentence-level computations in the brain.

摘要

句子理解涉及一系列高度相关的过程,包括句法分析、语义组合和语用推理。在神经影像学中,研究句子处理的大脑基础的主要范式是比较句子和非结构化单词列表引起的大脑活动。这些研究通常在颞叶前部(aTL)发现句子活动增加的效应。这些发现与神经心理学数据一起,激发了这样的假设,即 aTL 参与句子级别的组合。然而,在语言理解过程中的组合处理发生在数十到数百毫秒内,即在比血流动力学测量的时间分辨率快得多的时间尺度上。在这里,我们使用脑磁图(MEG)研究句子级处理的时间过程,以更好地理解该常见范式中激活的时间分布,并检验组合假设的一个关键预测:由于句子是逐字逐句地解释的,因此与基本语言组合相关的活动应该与单词呈现时间锁定。我们的结果表明,与单词列表相比,句子在单词出现后约 250 毫秒开始时颞叶前部活动增加。我们还观察到在颞后、下额叶和腹内侧区域的其他大脑区域的激活增加。这些发现证实了组合假设对于 aTL 的一个关键预测,并进一步阐明了大脑中句子级计算的时空特征。

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