Literature DB >> 7820564

Brain activity during reading. The effects of exposure duration and task.

C J Price1, R J Wise, J D Watson, K Patterson, D Howard, R S Frackowiak.   

Abstract

Brain activity during reading tasks was investigated using PET. The aim was to account for differences in the results of two previous studies [those of Petersen et al. (Science 1990; 249: 1041-4) and Howard et al. (Brain 1992; 115: 1769-82)] by systematically varying the type of reading task and the exposure duration of the word stimuli. Both variables strongly influenced patterns of brain activity. There were three types of task: (i) reading aloud; (ii) reading silently; and (iii) lexical decision on visually presented words and pseudowords. Reading aloud and reading silently engaged the left middle and superior temporal regions, confirming the important role of these areas in visual word processing. The areas principally engaged during lexical decision were the left inferior and middle frontal cortices and the supplementary motor area; activity in these areas suggests that the subjects were using a phonological strategy to perform the task. There was also a significant effect of exposure duration, with activity being greater for short (150 ms) exposure durations than for long (1000 ms or 981 ms) exposure durations. We conclude that until we understand how subtle variations in experimental design influence brain activity during reading tasks, the association of specific processing functions with individual anatomical areas activated during reading is premature.

Mesh:

Year:  1994        PMID: 7820564     DOI: 10.1093/brain/117.6.1255

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  64 in total

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7.  Differential effects of word length and visual contrast in the fusiform and lingual gyri during reading.

Authors:  A Mechelli; G W Humphreys; K Mayall; A Olson; C J Price
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8.  Differences in auditory processing of words and pseudowords: an fMRI study.

Authors:  S D Newman; D Twieg
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10.  Investigating the generators of the scalp recorded visuo-verbal P300 using cortically constrained source localization.

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