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Embedded Words in Visual Word Recognition: Does the Left Hemisphere See the Rain in Brain?

机译:视觉词识别中的嵌入词:左半球是否能看到大脑中的雨?

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摘要

To examine whether interhemispheric transfer during foveal word recognition entails a discontinuity between the information presented to the left and right of fixation, we presented target words in such a way that participants fixated immediately left or right of an embedded word (as in gr*apple, bull*et) or in the middle of an embedded word (grapp*le, bu*llet). Categorization responses to target words were faster and more accurate in a congruent condition (in which the embedded word was associated with the same response; e.g., Does bullet refer to an item of clothing?) than in an incongruent condition (e.g., Does bullet refer to a type of animal?). However, the magnitude of this effect did not vary as a function of position of fixation, relative to the embedded word, as might be expected if information from the 2 visual fields was initially split over the cerebral hemispheres and integrated only late in the word identification process. Equivalent results were observed in Experiment 1 (long stimulus duration) and Experiment 2 (in which stimulus duration was 200 ms; i.e., less than the time required to initiate a refixation).
机译:为了检查在中心凹单词识别期间的半球间转移是否会导致固定在左侧和右侧呈现的信息之间的不连续性,我们以目标参与者固定在嵌入单词的左侧或右侧的方式呈现目标单词(例如在gr * apple, Bull * et)或嵌入单词的中间(grapp * le,bu * llet)。与不一致条件(例如,子弹是否指代衣服)相比,在一致的条件下(对嵌入词与相同的响应相关;例如,子弹指的是一件衣服?),对目标词的分类响应更快,更准确。对一种动物?)。但是,相对于嵌入的单词,此效果的大小不会随固定位置的变化而变化,这是可以预期的,如果来自两个视野的信息最初在大脑半球上分开并仅在单词识别的后期整合处理。在实验1(长刺激持续时间)和实验2(刺激持续时间为200毫秒;即小于启动固定所需的时间)中观察到了等效的结果。

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