NotesFAQContact Us
Collection
Advanced
Search Tips
Audience
Researchers6
Location
Greece1
Japan1
Laws, Policies, & Programs
What Works Clearinghouse Rating
Showing 1 to 15 of 41 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Buono, Alexia – Research in Dance Education, 2022
Somatic movement literacy is when one is literate in Body, making meaning from somatic experiences. It is not just developing an understanding about the body, objectively. Oriented around somatics and embodied cognition, this article will present a framework of somatic movement literacy developed by Paul Linden to be mapped onto…
Descriptors: Human Body, Motion, Preschool Children, Preschool Education
Peer reviewed Peer reviewed
PDF on ERIC Download full text
Kapodistria, Loukia; Chatzopoulos, Dimitris; Chomoriti, Katerina; Lykesas, Georgios; Lola, Afroditi – International Electronic Journal of Elementary Education, 2021
The purpose of this study was to evaluate the effects of a Greek traditional dance programme on sensorimotor synchronization (SMS) and reaction time on primary school children (6.41 ± 0.41 yr.). We randomly assigned 61 children to either the dance group (31 children, 15 boys, 16 girls, 6.42 ± 0.40 yr.), who took part in a dance programme of 12…
Descriptors: Foreign Countries, Dance Education, Perceptual Motor Learning, Reaction Time
Peer reviewed Peer reviewed
Direct linkDirect link
Manning, Catherine; Charman, Tony; Pellicano, Elizabeth – Journal of Autism and Developmental Disorders, 2015
Contrasting reports of "reduced" and "intact" sensitivity to coherent motion in autistic individuals may be attributable to stimulus parameters. Here, we investigated whether dot lifetime contributes to elevated thresholds in children with autism. We presented a standard motion coherence task to 31 children with autism and 31…
Descriptors: Motion, Cognitive Processes, Children, Autism
Peer reviewed Peer reviewed
Direct linkDirect link
Noda, Mitsuru – International Journal of Behavioral Development, 2014
This study aims to examine the developmental changes in young children's perception. A matching completion task consisting of three geometric figures and one bird-like figure were completed by children 3-5 years of age ("N" = 99). The rotation effect, in which the correct response decreased with orientation (45°, 90° 135°, and 180°), was…
Descriptors: Developmental Stages, Young Children, Perceptual Development, Cognitive Processes
Peer reviewed Peer reviewed
Direct linkDirect link
Pulverman, Rachel; Song, Lulu; Hirsh-Pasek, Kathy; Pruden, Shannon M.; Golinkoff, Roberta M. – Child Development, 2013
In the world, the manners and paths of motion events take place together, but in language, these features are expressed separately. How do infants learn to process motion events in linguistically appropriate ways? Forty-six English-learning 7- to 9-month-olds were habituated to a motion event in which a character performed both a manner and a…
Descriptors: English, Language Acquisition, Infants, Cognitive Processes
Peer reviewed Peer reviewed
Direct linkDirect link
Pieretti, Robert A.; Kaul, Sandra D.; Zarchy, Razi M.; O'Hanlon, Laureen M. – Communication Disorders Quarterly, 2015
The primary focus of this research study was to examine the benefit of a using a multimodal approach to speech sound correction with preschool children. The approach uses the auditory, tactile, and kinesthetic modalities and includes a unique, interactive visual focus that attempts to provide a visual representation of a phonemic category. The…
Descriptors: Speech Impairments, Preschool Children, Auditory Stimuli, Tactual Perception
Peer reviewed Peer reviewed
Direct linkDirect link
Norton, Daniel J.; McBain, Ryan K.; Ongur, Dost; Chen, Yue – Brain and Cognition, 2011
Schizophrenia patients exhibit perceptual and cognitive deficits, including in visual motion processing. Given that cognitive systems depend upon perceptual inputs, improving patients' perceptual abilities may be an effective means of cognitive intervention. In healthy people, motion perception can be enhanced through perceptual learning, but it…
Descriptors: Schizophrenia, Visual Perception, Patients, Motion
Peer reviewed Peer reviewed
Direct linkDirect link
Schlottmann, Anne; Ray, Elizabeth – Developmental Science, 2010
Infants are sensitive to biological motion, but do they recognize it as animate? As a first step towards answering this question, two experiments investigated whether 6-month-olds selectively attribute goals to shapes moving like animals. We habituated infants to a square moving towards one of two targets. When target locations were switched,…
Descriptors: Animals, Infants, Motion, Goal Orientation
Peer reviewed Peer reviewed
Direct linkDirect link
Kalagher, Hilary; Jones, Susan S. – Journal of Experimental Child Psychology, 2011
Adults vary their haptic exploratory behavior reliably with variation both in the sensory input and in the task goals. Little is known about the development of these connections between perceptual goals and exploratory behaviors. A total of 36 children ages 3, 4, and 5 years and 20 adults completed a haptic intramodal match-to-sample task.…
Descriptors: Toddlers, Child Development, Young Children, Adults
Peer reviewed Peer reviewed
Direct linkDirect link
Taylor, Nicole M.; Jakobson, Lorna S. – Brain and Cognition, 2010
The term "representational momentum" (RM) refers to the idea that our memory representations for moving objects incorporate information about movement--a fact that can lead us to make errors when judging an object's location (the RM effect). In this study, we explored the RM effect in a sample of children born very prematurely and a sample born at…
Descriptors: Motion, Memory, Cognitive Development, Premature Infants
Peer reviewed Peer reviewed
Direct linkDirect link
Burrill, Rebecca – Teaching Artist Journal, 2010
The author is naturally a kinesthetic learner. As a child she was steeped in the wilds of seashore, fields, and woods in which she was free to roam, explore, and imagine in a deeply sensual, movement-oriented world. Because of these first experiences of freedom of movement and spontaneity in the highly intense natural world, she found the…
Descriptors: Creativity, Sensory Integration, Freedom, Motion
Peer reviewed Peer reviewed
Byrne, Joseph M.; Horowitz, Frances Degen – Child Development, 1984
Examines discrimination of geometric shapes by three-month-old infants who were presented with geometric stimuli moving laterally at two different velocities. Finds that subjects discriminate between geometric forms at velocities that, according to previous findings, might interfere with shape discrimination. Discusses the possible interactive…
Descriptors: Discrimination Learning, Infants, Motion, Perceptual Development
Peer reviewed Peer reviewed
Poulin-Dubois, Diane; And Others – Cognitive Development, 1996
Investigates the concept of animacy of 9- and 12-month-old infants by exposing them to autonomous motion with animate and inanimate objects in a series of three experiments. Three experiments were carried out. Results indicated that infants discriminate animate from inanimate objects on the basis of motion cues by the age of nine months. (MOK)
Descriptors: Attention, Behavior Patterns, Infants, Motion
Peer reviewed Peer reviewed
Gibson, Eleanor J.; And Others – Developmental Psychology, 1978
Five-month-old infants were habituated to three types of visually presented rigid motion, with duration of fixation as the dependent measure. After reaching a criterion of habituation, a fourth rigid motion (not habituated) and a deformation were presented. (Author/SS)
Descriptors: Eye Fixations, Infant Behavior, Infants, Motion
Peer reviewed Peer reviewed
Booth, Amy E.; Pinto, Jeannine; Bertenthal, Bennett I. – Developmental Psychology, 2002
Two experiments tested infants' sensitivity to properties of point-light displays of a walker and a runner that were equivalent regarding the phasing of limb movements. Found that 3-, but not 5-month-olds, discriminated these displays. When the symmetrical phase-patterning of the runner display was perturbed by advancing two of its limbs by 25…
Descriptors: Age Differences, Infants, Motion, Perceptual Development
Previous Page | Next Page »
Pages: 1  |  2  |  3