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Hsiao, Janet H.; Cheung, Kit – Cognitive Science, 2016
In Chinese orthography, the most common character structure consists of a semantic radical on the left and a phonetic radical on the right (SP characters); the minority, opposite arrangement also exists (PS characters). Recent studies showed that SP character processing is more left hemisphere (LH) lateralized than PS character processing.…
Descriptors: Chinese, Orthographic Symbols, Word Recognition, Brain Hemisphere Functions
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Ellis, Andrew W.; Ansorge, Lydia; Lavidor, Michal – Brain and Language, 2007
Ellis, Ansorge and Lavidor (2007) [Ellis, A.W., Ansorge, L., & Lavidor, M. (2007). Words, hemispheres, and dissociable subsystems: The effects of exposure duration, case alternation, priming and continuity of form on word recognition in the left and right visual fields. "Brain and Language," 103, 292-303.] presented three experiments investigating…
Descriptors: Word Recognition, Brain Hemisphere Functions, Language Processing, Neurological Organization
Kandhadai, Padmapriya A. – ProQuest LLC, 2009
When we hear a word, it is remarkable how we store, activate and rapidly retrieve a vast amount of relevant information within a few hundred milliseconds. This thesis examines how meaning is processed in parallel--but with critical differences--between the two hemispheres of the brain. Event-related brain potentials (ERP) were used to examine…
Descriptors: Comprehension, Brain Hemisphere Functions, Semantics, Brain
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Hsiao, Janet H.; Lam, Sze Man – Cognitive Science, 2013
Through computational modeling, here we examine whether visual and task characteristics of writing systems alone can account for lateralization differences in visual word recognition between different languages without assuming influence from left hemisphere (LH) lateralized language processes. We apply a hemispheric processing model of face…
Descriptors: Brain Hemisphere Functions, Phoneme Grapheme Correspondence, Word Recognition, Visual Perception
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Ellis, Andrew W.; Brysbaert, Marc – Neuropsychologia, 2010
Split fovea theory proposes that when the eyes are fixated within a written word, visual information about the letters falling to the left of fixation is projected initially to the right cerebral hemisphere while visual information about the letters falling to the right of fixation is projected to the left cerebral hemisphere. The two parts of the…
Descriptors: Brain Hemisphere Functions, Eye Movements, Reading Processes, Word Recognition
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Faust, Miriam; Ben-Artzi, Elisheva; Harel, Itay – Brain and Language, 2008
Previous research suggests that the left hemisphere (LH) focuses on strongly related word meanings; the right hemisphere (RH) may contribute uniquely to the processing of lexical ambiguity by activating and maintaining a wide range of meanings, including subordinate meanings. The present study used the word-lists false memory paradigm [Roediger,…
Descriptors: Brain Hemisphere Functions, Semantics, Figurative Language, Word Recognition
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Ellis, Andrew W.; Ansorge, Lydia; Lavidor, Michal – Brain and Language, 2007
Three experiments explore aspects of the dissociable neural subsystems theory of hemispheric specialisation proposed by Marsolek and colleagues, and in particular a study by [Deason, R. G., & Marsolek, C. J. (2005). A critical boundary to the left-hemisphere advantage in word processing. "Brain and Language," 92, 251-261]. Experiment 1A showed…
Descriptors: Brain Hemisphere Functions, Graphemes, Word Recognition, Language Processing
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Jordan, Timothy R.; Paterson, Kevin B. – Neuropsychologia, 2009
In recent years, some researchers have proposed that a fundamental component of the word recognition process is that each fovea is divided precisely at its vertical midline and that information either side of this midline projects to different, contralateral hemispheres. Thus, when a word is fixated, all letters to the left of the point of…
Descriptors: Scientific Research, Word Recognition, Brain Hemisphere Functions, Theories
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Weems, Scott A.; Reggia, James A. – Brain and Language, 2006
The Wernicke-Lichtheim-Geschwind (WLG) theory of the neurobiological basis of language is of great historical importance, and it continues to exert a substantial influence on most contemporary theories of language in spite of its widely recognized limitations. Here, we suggest that neurobiologically grounded computational models based on the WLG…
Descriptors: Aphasia, Brain Hemisphere Functions, Word Recognition, Theories
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Lavidor, Michal; Hayes, Adrian; Shillcock, Richard; Ellis, Andrew W. – Brain and Language, 2004
The split fovea theory proposes that visual word recognition of centrally presented words is mediated by the splitting of the foveal image, with letters to the left of fixation being projected to the right hemisphere (RH) and letters to the right of fixation being projected to the left hemisphere (LH). Two lexical decision experiments aimed to…
Descriptors: Word Recognition, Language Processing, Visual Stimuli, Orthographic Symbols
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Faust, Miriam; Barak, Ofra; Chiarello, Christine – Brain and Language, 2006
The present study examined left (LH) and right (RH) hemisphere involvement in discourse processing by testing the ability of each hemisphere to use world knowledge in the form of script contexts for word recognition. Participants made lexical decisions to laterally presented target words preceded by centrally presented script primes (four…
Descriptors: Brain Hemisphere Functions, Word Recognition, Language Processing, Cues
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Weems, Scott A.; Reggia, James A. – Brain and Language, 2004
Two findings serve as the hallmark for hemispheric specialization during lateralized lexical decision. First is an overall word advantage, with words being recognized more quickly and accurately than non-words (the effect being stronger in response latency). Second, a right visual field advantage is observed for words, with little or no…
Descriptors: Word Recognition, Brain Hemisphere Functions, Models, Comparative Analysis
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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