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Bettoni, Roberta; Addabbo, Margaret; Bulf, Hermann; Macchi Cassia, Viola – Child Development, 2021
Infant research is providing accumulating evidence that number-space mappings appear early in development. Here, a Posner cueing paradigm was used to investigate the neural mechanisms underpinning the attentional bias induced by nonsymbolic numerical cues in 9-month-old infants (N = 32). Event-related potentials and saccadic reaction time were…
Descriptors: Infants, Spatial Ability, Neurology, Attention
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Lochy, Aliette; Schiltz, Christine – Child Development, 2019
The emergence of visual cortex specialization for culturally acquired characters like letters and digits, both arbitrary shapes related to specific cognitive domains, is yet unclear. Here, 20 young children (6.12 years old) were tested with a frequency-tagging paradigm coupled with electroencephalogram recordings to assess discrimination responses…
Descriptors: Grade 1, Elementary School Students, Specialization, Brain Hemisphere Functions
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Ratcliff, Roger; Love, Jessica; Thompson, Clarissa A.; Opfer, John E. – Child Development, 2012
Children (n = 130; M[subscript age] = 8.51-15.68 years) and college-aged adults (n = 72; M[subscript age] = 20.50 years) completed numerosity discrimination and lexical decision tasks. Children produced longer response times (RTs) than adults. R. Ratcliff's (1978) diffusion model, which divides processing into components (e.g., quality of…
Descriptors: Children, Young Adults, Older Adults, Reaction Time
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Sekuler, Robert; Mierkiewicz, Diane – Child Development, 1977
When adults judge which of two digits is numerically larger, their response times decrease linearly with the numerical difference. For fourth- and seventh-grade children, the slope of the function relating judgment time to numerical difference is similar to that of adults, but much steeper for kindergarten and first-grade children. (Author/JMB)
Descriptors: Adults, Elementary School Students, Junior High School Students, Number Concepts