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The roles of word concreteness and cognitive load on interhemispheric processes of recognition

机译:单词具体性和认知负荷在半球识别过程中的作用

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Previous studies on hemispheric specialisation suggest that the cerebral hemispheres differ in the way verbal information is processed. There is also evidence that functional asymmetries are attributable to differences in stimulus properties and/or task complexity. To study these asymmetries in the domain of explicit recognition, concrete and abstract nouns were presented either in the right or left visual fields and recognised with foveal vision at different retention levels. We propose that different hemispheric mechanisms underlie the encoding of abstract and concrete information, which can be modulated by cognitive or mental load. To accomplish this goal, 92 right-handed undergraduate Portuguese students with normal or corrected-to-normal vision were randomly sampled from a university campus. The results showed that concrete words were discriminated better than abstract words when previously encoded in the right hemisphere for the longest retention interval between encoding and retrieval. These data suggest that there are different neural mechanisms for the semantic encoding of concrete and abstract concepts. The practical implications are discussed.
机译:先前有关半球专业化的研究表明,大脑半球的语言信息处理方式不同。也有证据表明,功能不对称可归因于刺激特性和/或任务复杂性的差异。为了研究在显式识别领域中的这些不对称性,在右或左视野中出现了具体名词和抽象名词,并在不同保留水平下通过中央凹视觉对其进行了识别。我们建议在抽象和具体信息的编码基础上采用不同的半球机制,这些信息可以通过认知或心理负荷进行调节。为了实现这一目标,从大学校园随机抽取了92名视力正常或矫正视力正常的葡萄牙右撇子学生。结果表明,在右侧半球中进行编码的具体单词比抽象单词的区分更好,在编码和检索之间的保留时间最长。这些数据表明,对于具体和抽象概念的语义编码存在不同的神经机制。讨论了实际含义。

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