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Esseily, Rana; Rat-Fischer, Lauriane; O'Regan, Kevin; Fagard, Jacqueline – Cognitive Development, 2013
Our aim was to investigate why 16-month-old infants fail to master a novel tool-use action via observational learning. We hypothesized that 16-month-olds' difficulties may be due to not understanding the goal of the observed action. To test this hypothesis, we investigated whether showing infants an explicit demonstration of the goal of the action…
Descriptors: Infants, Observational Learning, Novelty (Stimulus Dimension), Hypothesis Testing
Aschersleben, Gisa; Henning, Anne; Daum, Moritz M. – Cognitive Development, 2013
Research on early physical reasoning has shown surprising discontinuities in developmental trajectories. Infants possess some skills that seem to disappear and then re-emerge in childhood. It has been suggested that prediction skills required in search tasks might cause these discontinuities (Keen, 2003). We tested 3.5- to 5-year-olds'…
Descriptors: Cognitive Processes, Prediction, Preschool Children, Infants
Westermann, Gert; Mareschal, Denis – Cognitive Development, 2012
Computational models are tools for testing mechanistic theories of learning and development. Formal models allow us to instantiate theories of cognitive development in computer simulations. Model behavior can then be compared to real performance. Connectionist models, loosely based on neural information processing, have been successful in…
Descriptors: Classification, Infants, Cognitive Development, Computation
Sakkalou, Elena; Gattis, Merideth – Cognitive Development, 2012
Two studies were conducted to examine infants' ability to discern intentions from lexical and prosodic cues. Two groups of 14-18-month-olds participated in these studies. In both studies, infants watched an adult perform a sequence of two-step actions on novel toys that produced an end-result. In the first study actions were marked intentionally…
Descriptors: Infants, Cues, Intention, Adults
Spencer, John P.; Austin, Andrew; Schutte, Anne R. – Cognitive Development, 2012
We examine the contributions of dynamic systems theory to the field of cognitive development, focusing on modeling using dynamic neural fields. After introducing central concepts of dynamic field theory (DFT), we probe empirical predictions and findings around two examples--the DFT of infant perseverative reaching that explains Piaget's A-not-B…
Descriptors: Cognitive Development, Systems Approach, Models, Theories
Hamlin, J. Kiley; Wynn, Karen – Cognitive Development, 2012
Humans gather most of their knowledge about the world, including objectively true facts and specific cultural norms, by observing and being taught by others. Some individuals are worthy teachers and objects of imitation, having knowledge of cultural practices and positive intentions to inform. Others are better ignored because they are ignorant,…
Descriptors: Socialization, Antisocial Behavior, Infants, Food
Sera, Maria D.; Gordon Millett, Katherine – Cognitive Development, 2011
Considerable evidence indicates that shape similarity plays a major role in object recognition, identification and categorization. However, little is known about shape processing and its development. Across four experiments, we addressed two related questions. First, what makes objects similar in shape? Second, how does the processing of shape…
Descriptors: Infants, Cognitive Development, Cognitive Processes, Role
Liszkowski, Ulf; Tomasello, Michael – Cognitive Development, 2011
Little is known about the origins of the pointing gesture. We sought to gain insight into its emergence by investigating individual differences in the pointing of 12-month-old infants in two ways. First, we looked at differences in the communicative and interactional uses of pointing and asked how different hand shapes relate to point frequency,…
Descriptors: Nonverbal Communication, Mothers, Infants, Individual Differences
Johnson, Susan C.; Bolz, Matthias; Carter, Erin; Mandsanger, John; Teichner, Alisha; Zettler, Patricia – Cognitive Development, 2008
By the end of the first year, infants are able to recognize both goal-directed and perceptually guided behavior in the actions of non-human agents, even faceless ones. How infants derive the relevant orientation of an unfamiliar agent in the absence of familiar markers such as eyes, ears, or face is unknown. The current studies tested the…
Descriptors: Infants, Cognitive Development, Attention, Eye Movements
Grafenhain, Maria; Behne, Tanya; Carpenter, Malinda; Tomasello, Michael – Cognitive Development, 2009
We investigated whether infants comprehend others' nonverbal communicative intentions directed to a third person, in an "overhearing" context. An experimenter addressed an assistant and indicated a hidden toy's location by either gazing ostensively or pointing to the location for her. In a matched control condition, the experimenter performed…
Descriptors: Cues, Interpersonal Communication, Infants, Comprehension
Hayes, Rachel A.; Slater, Alan M.; Longmore, Christopher A. – Cognitive Development, 2009
Nine-month-olds can respond to a change in rhyme when the conditioned head turn procedure is used [Hayes, R. A., Slater, A., & Brown, E. (2000). "Infants' ability to categorise on the basis of rhyme." "Cognitive Development, 15," 405-419]. However, it is not known whether infants are detecting the change in vowel, the change in coda, or both. In…
Descriptors: Vowels, Infants, Rhyme, Cognitive Development
Johnson, Susan C.; Shimizu, Y. Alpha; Ok, Su-Jeong – Cognitive Development, 2007
Twelve-month-old infants attribute goals to both familiar, human agents and unfamiliar, non-human agents. They also attribute goal-directedness to both familiar actions and unfamiliar ones. Four conditions examined information 12-month-olds use to determine which actions of an unfamiliar agent are goal-directed. Infants who witnessed the agent…
Descriptors: Infants, Cognitive Development, Goal Orientation, Role
Premack, David; Premack, Ann – Cognitive Development, 2004
A theory of education requires a theory of the mind that is to be educated. Modules are the central feature of the mind of the infant. Innate learning devices, modules, prepare the infant with the following competences: language, number, theory of mind, spatial navigation, music, etc. We propose that the child be taught what evolution has prepared…
Descriptors: Infants, Cognitive Development
Kamewari, K.; Kato, M.; Kanda, T.; Ishiguro, H.; Hiraki, K. – Cognitive Development, 2005
Recent infant studies indicate that goal attribution (understanding of goal-directed action) is present very early in infancy. We examined whether 6.5-month-olds attribute goals to agents and whether infants change the interpretation of goal-directed action according to the kind of agent. We conducted three experiments using the visual habituation…
Descriptors: Motion, Infants, Cognitive Development

Bauer, Patricia J.; And Others – Cognitive Development, 1995
Tested 13-, 16-, and 20-month olds' and 24- and 28-month olds' categorization of global- and basic-level object sets composed of prototypical and nonprototypical exemplars. Findings offer new information on the effects of prototypicality and on the process of differentiation of early global categories into more specific basic-level ones. (DR)
Descriptors: Classification, Cognitive Development, Comparative Analysis, Developmental Stages
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