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Showing all 8 results
Park, Joonkoo; Li, Rosa; Brannon, Elizabeth M. – Developmental Science, 2014
In early childhood, humans learn culturally specific symbols for number that allow them entry into the world of complex numerical thinking. Yet little is known about how the brain supports the development of the uniquely human symbolic number system. Here, we use functional magnetic resonance imaging along with an effective connectivity analysis…
Descriptors: Brain, Numbers, Cognitive Processes, Mathematics Achievement
Cantlon, Jessica F.; Safford, Kelley E.; Brannon, Elizabeth M. – Developmental Science, 2010
When enumerating small sets of elements nonverbally, human infants often show a set-size limitation whereby they are unable to represent sets larger than three elements. This finding has been interpreted as evidence that infants spontaneously represent small numbers with an object-file system instead of an analog magnitude system (Feigenson,…
Descriptors: Young Children, Logical Thinking, Numbers, Developmental Psychology
Libertus, Melissa E.; Brannon, Elizabeth M. – Developmental Science, 2010
Previous studies have shown that as a group 6-month-old infants successfully discriminate numerical changes when the values differ by at least a 1:2 ratio but fail at a 2:3 ratio (e.g. 8 vs. 16 but not 8 vs. 12). However, no studies have yet examined individual differences in number discrimination in infancy. Using a novel numerical change…
Descriptors: Infants, Visual Stimuli, Visual Discrimination, Numbers
Cordes, Sara; Brannon, Elizabeth M. – Developmental Science, 2009
Whether human infants spontaneously represent number remains contentious. Clearfield & Mix (1999) and Feigenson, Carey & Spelke (2002) put forth evidence that when presented with small sets of 1-3 items infants may preferentially attend to continuous properties of stimuli rather than to number, and these results have been interpreted as evidence…
Descriptors: Hypothesis Testing, Infants, Number Concepts, Cues
Cordes, Sara; Brannon, Elizabeth M. – Developmental Science, 2008
We review recently published papers that have contributed to our understanding of how the preverbal infant represents number, area and time. We review evidence that infants rely on two distinct systems to represent number nonverbally and highlight the similarities in the ratio-dependent discrimination of number, time and area. Contrary to earlier…
Descriptors: Infants, Competence, Concept Formation, Time
Cantlon, Jessica; Fink, Rebecca; Safford, Kelley; Brannon, Elizabeth M. – Developmental Science, 2007
Do preschool children appreciate numerical value as an abstract property of a set of objects? We tested the influence of stimulus features such as size, shape, and color on preschool children's developing nonverbal numerical abilities. Children between 3 and 5 years of age were tested on their ability to estimate number when the sizes, shapes, and…
Descriptors: Preschool Children, Number Concepts, Objective Tests, Serial Ordering
Brannon, Elizabeth M.; Suanda, Sumarga; Libertus, Klaus – Developmental Science, 2007
Time perception is important for many aspects of human behavior, and a large literature documents that adults represent intervals and that their ability to discriminate temporal intervals is ratio dependent. Here we replicate a recent study by vanMarle and Wynn (2006 ) that used the visual habituation paradigm and demonstrated that temporal…
Descriptors: Intervals, Infants, Discrimination Learning, Time Factors (Learning)
Brannon, Elizabeth M.; Lutz, Donna; Cordes, Sara – Developmental Science, 2006
This paper investigates the ability of infants to attend to continuous stimulus variables and how this capacity relates to the representation of number. We examined the change in area needed by 6-month-old infants to detect a difference in the size of a single element (Elmo face). Infants successfully discriminated a 1:4, 1:3 and 1:2 change in the…
Descriptors: Infants, Stimuli, Identification, Cognitive Development

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