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Yeatman, Jason D.; Rauschecker, Andreas M.; Wandell, Brian A. – Brain and Language, 2013
Circuitry in ventral occipital-temporal cortex is essential for seeing words. We analyze the circuitry within a specific ventral-occipital region, the visual word form area (VWFA). The VWFA is immediately adjacent to the retinotopically organized VO-1 and VO-2 visual field maps and lies medial and inferior to visual field maps within motion…
Descriptors: Anatomy, Neurological Organization, Proximity, Brain Hemisphere Functions
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Laszlo, Sarah; Plaut, David C. – Brain and Language, 2012
The Parallel Distributed Processing (PDP) framework has significant potential for producing models of cognitive tasks that approximate how the brain performs the same tasks. To date, however, there has been relatively little contact between PDP modeling and data from cognitive neuroscience. In an attempt to advance the relationship between…
Descriptors: Word Recognition, Brain Hemisphere Functions, Language Processing, Guidelines
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Sun, Yafeng; Yang, Yanhui; Desroches, Amy S.; Liu, Li; Peng, Danling – Brain and Language, 2011
Previous literature in alphabetic languages suggests that the occipital-temporal region (the ventral pathway) is specialized for automatic parallel word recognition, whereas the parietal region (the dorsal pathway) is specialized for serial letter-by-letter reading (and). However, few studies have directly examined the role of the ventral and…
Descriptors: Romanization, Personality, Word Recognition, Character Recognition
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Lau, Ellen; Almeida, Diogo; Hines, Paul C.; Poeppel, David – Brain and Language, 2009
The electrophysiological response to words during the "N400" time window (approximately 300-500 ms post-onset) is affected by the context in which the word is presented, but whether this effect reflects the impact of context on "access" of the stored lexical information itself or, alternatively, post-access "integration" processes is still an open…
Descriptors: Sentences, Context Effect, Semantics, Reading Processes
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Guo, Yi; Burgund, E. Darcy – Brain and Language, 2010
The left mid-fusiform gyrus is repeatedly reported to be involved in visual word processing. Nevertheless, it is controversial whether this area responds to orthographic processing of reading. To examine this idea, neural activity was measured using functional magnetic resonance imaging in the present study while subjects performed phonological,…
Descriptors: Semantics, Romanization, Chinese, Language Processing
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Simola, Jaana; Holmqvist, Kenneth; Lindgren, Magnus – Brain and Language, 2009
Readers acquire information outside the current eye fixation. Previous research indicates that having only the fixated word available slows reading, but when the next word is visible, reading is almost as fast as when the whole line is seen. Parafoveal-on-foveal effects are interpreted to reflect that the characteristics of a parafoveal word can…
Descriptors: Semantics, Eye Movements, Visual Perception, Language Processing
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Altmann, Lori J. P.; Saleem, Ahmad; Kendall, Diane; Heilman, Kenneth M.; Rothi, Leslie J. Gonzalez – Brain and Language, 2006
This study tested the hypotheses that people had a bias for drawing agents on the left of a picture when given a verb stimulus targeting an active or passive event (e.g., "kicked" or "is kicked") and that orthographic directionality would influence the way events were illustrated. Monolingual English speakers, who read and write left-to-right, and…
Descriptors: English, Semitic Languages, Hypothesis Testing, Verbs
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Halderman, Laura K.; Chiarello, Christine – Brain and Language, 2005
A lateralized backward masking paradigm was used to examine hemisphere differences in orthographic and phonological processes at an early time course of word recognition. Targets (e.g., bowl) were presented and backward masked by either pseudohomophones of the target word (orthographically and phonologically similar, e.g., BOAL), orthographically…
Descriptors: Visual Stimuli, Phonology, Word Recognition, Reading Processes
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Monaghan, Padraic; Shillcock, Richard; McDonald, Scott – Brain and Language, 2004
We report a series of neural network models of semantic processing of single English words in the left and the right hemispheres of the brain. We implement the foveal splitting of the visual field and assess the influence of this splitting on a mapping from orthography to semantic representations in single word reading. The models were trained on…
Descriptors: Models, Semantics, English, Brain Hemisphere Functions