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Anjie Cao; Molly Lewis; Sho Tsuji; Christina Bergmann; Alejandrina Cristia; Michael C. Frank – Developmental Science, 2025
Developmental psychology focuses on how psychological constructs change with age. In cognitive development research, however, the specifics of this emergence is often underspecified. Researchers often provisionally assume linear growth by including chronological age as a predictor in regression models. In this work, we aim to evaluate this…
Descriptors: Language Acquisition, Infant Behavior, Age Differences, Developmental Stages
Abolghasem, Zahra; Teng, Tiffany H.-T.; Nexha, Elida; Zhu, Cherrie; Jean, Cindy S.; Castrillon, Mariana; Che, Eric; Di Nallo, Eva V.; Schlichting, Margaret L. – Developmental Science, 2023
Even once children can accurately remember their experiences, they nevertheless struggle to use those memories in flexible new ways--as in when drawing inferences. However, it remains an open question as to whether the developmental differences observed during both memory formation and inference itself represent a fundamental limitation on…
Descriptors: Memory, Inferences, Learning Processes, Young Children
Chierchia, Gabriele; Soukupová, Magdaléna; Kilford, Emma J.; Griffin, Cait; Leung, Jovita; Palminteri, Stefano; Blakemore, Sarah-Jayne – Developmental Science, 2023
Understanding how learning changes during human development has been one of the long-standing objectives of developmental science. Recently, advances in computational biology have demonstrated that humans display a bias when learning to navigate novel environments through rewards and punishments: they learn more from outcomes that confirm their…
Descriptors: Reinforcement, Learning Processes, Developmental Stages, Adolescents
Nischal, Roshni Pushpa; Behrmann, Marlene – Developmental Science, 2023
Holistic processing (HP) of faces refers to the obligatory, simultaneous processing of the parts and their relations, and it emerges over the course of development. HP is manifest in a decrement in the perception of inverted versus upright faces and a reduction in face processing ability when the relations between parts are perturbed. Here,…
Descriptors: Word Recognition, Cognitive Processes, Developmental Stages, Comparative Analysis
Gee, Dylan G.; Hanson, Catherine; Caglar, Leyla Roksan; Fareri, Dominic S.; Gabard-Durnam, Laurel J.; Mills-Finnerty, Colleen; Goff, Bonnie; Caldera, Christina J.; Lumian, Daniel S.; Flannery, Jessica; Hanson, Stephen José; Tottenham, Nim – Developmental Science, 2022
Interactions between the amygdala and prefrontal cortex are fundamental to human emotion. Despite the central role of frontoamygdala communication in adult emotional learning and regulation, little is known about how top-down control emerges during human development. In the present cross-sectional pilot study, we experimentally manipulated…
Descriptors: Correlation, Diagnostic Tests, Brain Hemisphere Functions, Emotional Response
Cychosz, Margaret; Cristia, Alejandrina; Bergelson, Elika; Casillas, Marisa; Baudet, Gladys; Warlaumont, Anne S.; Scaff, Camila; Yankowitz, Lisa; Seidl, Amanda – Developmental Science, 2021
This study evaluates whether early vocalizations develop in similar ways in children across diverse cultural contexts. We analyze data from daylong audio recordings of 49 children (1-36 months) from five different language/cultural backgrounds. Citizen scientists annotated these recordings to determine if child vocalizations contained canonical…
Descriptors: Cultural Context, Contrastive Linguistics, Audio Equipment, Cultural Differences
Vinci-Booher, Sophia; James, Karin H. – Developmental Science, 2020
Letter production through handwriting creates visual experiences that may be important for the development of visual letter perception. We sought to better understand the neural responses to different visual percepts created during handwriting at different levels of experience. Three groups of participants, younger children, older children, and…
Descriptors: Alphabets, Handwriting, Visual Perception, Brain Hemisphere Functions
Lourenco, Stella F.; Aulet, Lauren S. – Developmental Science, 2019
There is general agreement that humans represent numerical, spatial, and temporal magnitudes from early in development. However, there is disagreement about whether different magnitudes converge within a general magnitude system and whether this system supports behavioral demonstrations of cross-magnitude interactions at different developmental…
Descriptors: Developmental Stages, Infants, Preschool Children, Age Differences
Wu, Jiamin; Chan, John S. Y.; Yan, Jin H. – Developmental Science, 2019
We examined the developmental differences in motor control and learning of a two-segment movement. One hundred and five participants (53 female) were divided into three age groups (7-8 years, 9-10 years and 19-27 years). They performed a two-segment movement task in four conditions (full vision, fully disturbed vision, disturbed vision in the…
Descriptors: Motor Development, Elementary School Students, Task Analysis, Accuracy
Delalande, Lisa; Moyon, Marine; Tissier, Cloélia; Dorriere, Valérie; Guillois, Bernard; Mevell, Katel; Charron, Sylvain; Salvia, Emilie; Poirel, Nicolas; Vidal, Julie; Lion, Stéphanie; Oppenheim, Catherine; Houdé, Olivier; Cachia, Arnaud; Borst, Grégoire – Developmental Science, 2020
A number of training interventions have been designed to improve executive functions and inhibitory control (IC) across the lifespan. Surprisingly, no study has investigated the structural neuroplasticity induced by IC training from childhood to late adolescence, a developmental period characterized by IC efficiency improvement and protracted…
Descriptors: Intervention, Brain Hemisphere Functions, Executive Function, Inhibition
Freier, Livia; Cooper, Richard P.; Mareschal, Denis – Developmental Science, 2017
Naturalistic goal-directed behaviours require the engagement and maintenance of appropriate levels of cognitive control over relatively extended intervals of time. In two experiments, we examined preschool children's abilities to maintain top-down control throughout the course of a sequential task. Both 3- and 5-year-olds demonstrated good…
Descriptors: Preschool Children, Developmental Stages, Age Differences, Decision Making
Hahn, Michael; Joechner, Ann-Kathrin; Roell, Judith; Schabus, Manuel; Heib, Dominik P. J.; Gruber, Georg; Peigneux, Philippe; Hoedlmoser, Kerstin – Developmental Science, 2019
Sleep spindles are related to sleep-dependent memory consolidation and general cognitive abilities. However, they undergo drastic maturational changes during adolescence. Here we used a longitudinal approach (across 7 years) to explore whether developmental changes in sleep spindle density can explain individual differences in sleep-dependent…
Descriptors: Sleep, Child Development, Memory, Cognitive Ability
Schneider, Julie M.; Maguire, Mandy J. – Developmental Science, 2019
School-aged and adolescent children continue to demonstrate improvements in how they integrate and comprehend real-time, auditory language over this developmental time period, which can have important implications for academic and social success. To better understand developmental changes in the neural processes engaged during language…
Descriptors: Semantics, Syntax, Language Processing, Error Patterns
Johnson, Blake; Jobst, Cecilia; Al-Loos, Rita; He, Wei; Cheyne, Douglas – Developmental Science, 2020
In a previous study, we reported the first measurements of pre-movement and sensorimotor cortex activity in preschool age children (ages 3-5 years) using a customized pediatric magnetoencephalographic system. Movement-related activity in the sensorimotor cortex differed from that typically observed in adults, suggesting that maturation of cortical…
Descriptors: Psychomotor Skills, Brain Hemisphere Functions, Preschool Children, Diagnostic Tests
Negen, James; Heywood-Everett, Edward; Roome, Hannah E.; Nardini, Marko – Developmental Science, 2018
Using landmarks and other scene features to recall locations from new viewpoints is a critical skill in spatial cognition. In an immersive virtual reality task, we asked children 3.5-4.5 years old to remember the location of a target using various cues. On some trials they could use information from their own self-motion. On some trials they could…
Descriptors: Spatial Ability, Recall (Psychology), Age Differences, Task Analysis