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Schultz, Heidrun; Sommer, Tobias; Peters, Jan – Learning & Memory, 2022
During associative retrieval, the brain reinstates neural representations that were present during encoding. The human medial temporal lobe (MTL), with its subregions hippocampus (HC), perirhinal cortex (PRC), and parahippocampal cortex (PHC), plays a central role in neural reinstatement. Previous studies have given compelling evidence for…
Descriptors: Brain Hemisphere Functions, Word Recognition, Recall (Psychology), Cognitive Processes
Lavidor, Michal; Walsh, Vincent – Brain and Language, 2004
The right and left visual fields each project to the contralateral cerebral hemispheres, but the extent of the functional overlap of the two hemifields along the vertical meridian is still under debate. After presenting the spatial, temporal, and functional specifications of Transcranial Magnetic Stimulation (TMS), we show that TMS is particularly…
Descriptors: Stimulation, Brain Hemisphere Functions, Word Recognition, Visual Perception
Whitney, C. – Brain and Language, 2004
Consistent with converging experimental evidence, we assume that foveal information is initially split across the two cerebral hemispheres. We have previously presented the SERIOL model of letter-position coding, which specifies how the resulting two halves of a letter string are integrated into an abstract representation of letter order. This…
Descriptors: Brain Hemisphere Functions, Word Recognition, Language Processing, Coding
Sandak, Rebecca; Mencl, W. Einar; Frost, Stephen J.; Pugh, Kenneth R. – Scientific Studies of Reading, 2004
In recent years, significant progress has been made in the study of reading and reading disability with the use of functional neuroimaging techniques. There is substantial converging evidence that skilled word recognition requires the development of a highly integrated cortical system that includes left hemisphere dorsal, ventral, and anterior…
Descriptors: Word Recognition, Brain Hemisphere Functions, Reading Difficulties, Reading Instruction
Ellis, Andrew W. – Brain and Language, 2004
It has long been known that the number of letters in a word has more of an effect on recognition speed and accuracy in the left visual field (LVF) than in the right visual field (RVF) provided that the word is presented in a standard, horizontal format. After considering the basis of the length by visual field interaction two further differences…
Descriptors: Word Recognition, Visual Perception, Eye Movements, Language Processing
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
Eichenbaum, Howard; Fortin, Norbert J. – Journal of the Experimental Analysis of Behavior, 2005
The notion that non-human animals are capable of episodic memory is highly controversial. Here, we review recent behavioral work from our laboratory showing that the fundamental features of episodic memory can be observed in rats and that, as in humans, this capacity relies on the hippocampus. We also discuss electrophysiological evidence, from…
Descriptors: Memory, Word Recognition, Familiarity, Olfactory Perception
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