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Impaired reading in patients with right hemianopia

Leff, A. P. and Scott, S. K. and Crewes, H. and Hodgson, Timothy L. and Cowey, A. and Howard, D. and Wise, R. J. S. (2000) Impaired reading in patients with right hemianopia. Annals of Neurology, 47 (2). pp. 171-178. ISSN 0364-5134

Full content URL: http://dx.doi.org/10.1002/1531-8249(200002)47:2<17...

Full text not available from this repository.

Item Type:Article
Item Status:Live Archive

Abstract

A left occipital stroke may result in alexia for two reasons, which may coexist depending on the distribution of the lesion. A lesion of the left lateroventral prestriate cortex or its afferents impairs word recognition ('pure alexia). If the left primary visual cortex or its afferents are destroyed, resulting in a complete right homonymous hemianopia, rightward saccades during text reading are disrupted ('hemianopic' alexia). By using functional imaging, we showed two separate but interdependent systems involved in reading. The first, subserving word recognition, involved the representation of foveal vision in the left and right primary visual cortex and the ventral prestriate cortex. The second system, responsible for the planning and execution of reading saccades, consisted of the representation of right parafoveal vision in the left visual cortex, the bilateral posterior parietal cortex (left > right), and the frontal eye fields (right > left). Disruption of this distributed neural system was demonstrated in patients with severe right homonymous hemianopia, commensurate with their inability to perform normal reading eye movements. Text reading, before processes involved in comprehension, requires the integration of perceptual and motor processes. We have demonstrated these distributed neural systems in normal readers and have shown how a right homonymous hemianopia disrupts the motor preparation of reading saccades during text reading.

Keywords:adult, aged, alexia, article, clinical article, dyslexia, female, hemianopia, human, male, positron emission tomography, priority journal, saccadic eye movement, visual cortex, word recognition, Adult, Brain, Hemianopsia, Humans, Middle Aged, Reading, Reference Values, Saccades, Tomography, Emission-Computed
Subjects:C Biological Sciences > C800 Psychology
C Biological Sciences > C850 Cognitive Psychology
Divisions:College of Social Science > School of Psychology
ID Code:10551
Deposited On:10 Jul 2013 12:08

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