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Multiple routes for compound word processing in the brain: Evidence from EEG

机译:大脑中复合词处理的多种途径:来自脑电图的证据

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摘要

Are compound words represented as unitary lexical units, or as individual constituents that are processed combinatorially? We investigated the neuro-cognitive processing of compounds using EEG and a passive-listening oddball design in which lexical access and combinatorial processing elicit dissociating Mismatch Negativity (MMN) brain-response patterns. MMN amplitude varied with compound frequency and semantic transparency (the clarity of the relationship between compound and constituent meanings). Opaque compounds elicited an enhanced 'lexical' MMN, reflecting stronger lexical representations, to high- vs. low-frequency compounds. Transparent compounds showed no frequency effect, nor differed to pseudo-compounds, reflecting the combination of a reduced 'syntactic' MMN indexing combinatorial links, and an enhanced 'lexical' MMN for real-word compounds compared to pseudo-compounds. We argue that transparent compounds are processed combinatorially alongside parallel lexical access of the whole-form representation, but whole-form access is the dominant mechanism for opaque compounds, particularly those of high-frequency. Results support a flexible dual-route account of compound processing.
机译:复合词是表示为单一词汇单位还是组合处理的单个成分?我们研究了使用脑电图和被动听法古怪设计的化合物的神经认知处理,其中词汇访问和组合处理引起了不匹配负性(MMN)脑反应模式的分离。 MMN幅度随复合词频率和语义透明性(复合词和构成词之间关系的清晰度)而变化。不透明的化合物引起高频和低频化合物增强的“词汇” MMN,反映了更强的词汇表示。透明化合物没有频率效应,也没有伪化合物,与伪化合物相比,反映了减少的“句法” MMN索引组合链接和针对实词化合物的增强的“词法” MMN的组合。我们认为,透明化合物是与完整形式表示形式的并行词汇访问一起组合处理的,但是完整形式访问是不透明化合物(尤其是高频不透明化合物)的主要机制。结果支持复合处理的灵活双路线说明。

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