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Twomey, Tae; Duncan, Keith J. Kawabata; Hogan, John S.; Morita, Kenji; Umeda, Kazumasa; Sakai, Katsuyuki; Devlin, Joseph T. – Brain and Language, 2013
In Japanese, the same word can be written in either morphographic Kanji or syllabographic Hiragana and this provides a unique opportunity to disentangle a word's lexical frequency from the frequency of its visual form--an important distinction for understanding the neural information processing in regions engaged by reading. Behaviorally,…
Descriptors: Familiarity, Japanese, Written Language, Word Frequency
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Nardone, Raffaele; De Blasi, Pierpaolo; Zuccoli, Giulio; Tezzon, Frediano; Golaszewski, Stefan; Trinka, Eugen – Brain and Language, 2012
We report a patient showing isolated phonological agraphia after an ischemic stroke involving the left supramarginal gyrus (SMG). In this patient, we investigated the effects of focal repetitive transcranial magnetic stimulation (rTMS) given as theta burst stimulation (TBS) over the left SMG, corresponding to the Brodmann area (BA) 40. The patient…
Descriptors: Learning Disabilities, Phonology, Patients, Brain
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Rao, Chaitra; Mathur, Avantika; Singh, Nandini C. – Brain and Language, 2013
Romanized transliteration is widely used in internet communication and global commerce, yet we know little about its behavioural and neural processing. Here, we show that Romanized text imposes a significant neurocognitive load. Readers faced greater difficulty in identifying concrete words written in Romanized transliteration (Romanagari)…
Descriptors: Romanization, Native Language, Cognitive Processes, Brain Hemisphere Functions
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Yang, Jianfeng; Wang, Xiaojuan; Shu, Hua; Zevin, Jason D. – Brain and Language, 2011
Cognitive models of reading all assume some division of labor among processing pathways in mapping among print, sound and meaning. Many studies of the neural basis of reading have used task manipulations such as rhyme or synonym judgment to tap these processes independently. Here we take advantage of specific properties of the Chinese writing…
Descriptors: Written Language, Brain Hemisphere Functions, Chinese, Cognitive Processes
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Yu, Hongbo; Gong, Lanyun; Qiu, Yinchen; Zhou, Xiaolin – Brain and Language, 2011
The Chinese character is composed of a finite set of strokes whose order in writing follows consensual principles and is learnt through school education. Using functional magnetic resonance imaging (fMRI), this study investigates the neural activity associated with the perception of writing sequences by asking participants to observe…
Descriptors: Chinese, Diagnostic Tests, Written Language, Orthographic Symbols
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Hu, Zhiguo; Wang, Wenjing; Liu, Hongyan; Peng, Danling; Yang, Yanhui; Li, Kuncheng; Zhang, John X.; Ding, Guosheng – Brain and Language, 2011
Effective literacy education in deaf students calls for psycholinguistic research revealing the cognitive and neural mechanisms underlying their written language processing. When learning a written language, deaf students are often instructed to sign out printed text. The present fMRI study was intended to reveal the neural substrates associated…
Descriptors: Printed Materials, Written Language, Sign Language, Deafness
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Han, Zaizhu; Bi, Yanchao – Brain and Language, 2009
The oral spelling process for logographic languages such as Chinese is intrinsically different from alphabetic languages. In Chinese only a subset of orthographic components are pronounceable and their phonological identities (i.e., component names) do not always correspond to the sound of the whole characters. We show that such phonological…
Descriptors: Spelling, Chinese, Learning Disabilities, Lateral Dominance
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Coderre, Emily L.; Filippi, Christopher G.; Newhouse, Paul A.; Dumas, Julie A. – Brain and Language, 2008
Prior research has shown that the two writing systems of the Japanese orthography are processed differently: kana (syllabic symbols) are processed like other phonetic languages such as English, while kanji (a logographic writing system) are processed like other logographic languages such as Chinese. Previous work done with the Stroop task in…
Descriptors: Written Language, Japanese, Native Speakers, Brain