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The perceptual span is dynamically adjusted in response to foveal load by beginning readers

  • The perceptual span describes the size of the visual field from which information is obtained during a fixation in reading. Its size depends on characteristics of writing system and reader, but-according to the foveal load hypothesis-it is also adjusted dynamically as a function of lexical processing difficulty. Using the moving window paradigm to manipulate the amount of preview, here we directly test whether the perceptual span shrinks as foveal word difficulty increases. We computed the momentary size of the span from word-based eye-movement measures as a function of foveal word frequency, allowing us to separately describe the perceptual span for information affecting spatial saccade targeting and temporal saccade execution. First fixation duration and gaze duration on the upcoming (parafoveal) word N + 1 were significantly shorter when the current (foveal) word N was more frequent. We show that the word frequency effect is modulated by window size. Fixation durations on word N + 1 decreased with high-frequency words N, but onlyThe perceptual span describes the size of the visual field from which information is obtained during a fixation in reading. Its size depends on characteristics of writing system and reader, but-according to the foveal load hypothesis-it is also adjusted dynamically as a function of lexical processing difficulty. Using the moving window paradigm to manipulate the amount of preview, here we directly test whether the perceptual span shrinks as foveal word difficulty increases. We computed the momentary size of the span from word-based eye-movement measures as a function of foveal word frequency, allowing us to separately describe the perceptual span for information affecting spatial saccade targeting and temporal saccade execution. First fixation duration and gaze duration on the upcoming (parafoveal) word N + 1 were significantly shorter when the current (foveal) word N was more frequent. We show that the word frequency effect is modulated by window size. Fixation durations on word N + 1 decreased with high-frequency words N, but only for large windows, that is, when sufficient parafoveal preview was available. This provides strong support for the foveal load hypothesis. To investigate the development of the foveal load effect, we analyzed data from three waves of a longitudinal study on the perceptual span with German children in Grades 1 to 6. Perceptual span adjustment emerged early in development at around second grade and remained stable in later grades. We conclude that the local modulation of the perceptual span indicates a general cognitive process, perhaps an attentional gradient with rapid readjustment.show moreshow less

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Metadaten
Author details:Johannes M. MeixnerORCiD, Jessie S. NixonORCiD, Jochen LaubrockORCiDGND
DOI:https://doi.org/10.1037/xge0001140
ISSN:0096-3445
ISSN:1939-2222
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/34881946
Title of parent work (English):Journal of experimental psychology : general
Publisher:American Psychological Association
Place of publishing:Washington
Publication type:Article
Language:English
Year of first publication:2022
Publication year:2022
Release date:2023/03/23
Tag:attention; development; eye movements; foveal load; perceptual span; reading
Volume:151
Issue:6
Number of pages:14
First page:1219
Last Page:1232
Funding institution:German Research Foundation (DFG) [GK-1668/1, LA 2884/2];; "Strukturbereich Kognitionswissenschaften" at University of Potsdam
Organizational units:Humanwissenschaftliche Fakultät / Strukturbereich Kognitionswissenschaften / Department Psychologie
DDC classification:1 Philosophie und Psychologie / 15 Psychologie / 150 Psychologie
Peer review:Referiert
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