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Claudio-Rafael Vasquez-Martinez; Francisco Flores-Cuevas; Felipe-Anastacio Gonzalez-Gonzalez; Luz-Maria Zuniga-Medina; Graciela-Esperanza Giron-Villacis; Irma-Carolina Gonzalez-Sanchez; Joaquin Torres-Mata – Bulgarian Comparative Education Society, 2024
Language is the basis of human communication and is the most important key to complete mental development and thinking. Therefore, children must learn to communicate using appropriate language. For this to happen, the development of language in the child must be understood as a biological process, complete with internal laws and with marked stages…
Descriptors: Infants, Morphology (Languages), Syntax, Phonology
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Caroline Kelsey; Adelia Kamenetskiy; Kaitlin Mulligan; Carly Tiras; Michaela Kent; Laurie Bayet; John Richards; Michelle Bosquet Enlow; Charles A. Nelson – Developmental Science, 2025
Functional magnetic resonance imaging (fMRI) studies with adults provide evidence that functional brain networks, including the default mode network and frontoparietal network, underlie executive functioning (EF). However, given the challenges of using fMRI with infants and young children, little work has assessed the developmental trajectories of…
Descriptors: Infants, Toddlers, Preschool Children, Young Children
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Brod, Garvin; Shing, Yee Lee – Mind, Brain, and Education, 2022
Humans accumulate knowledge throughout their entire lives. In what ways does this accumulation of knowledge influence learning of new information? Are there age-related differences in the way prior knowledge is leveraged for remembering new information? We review studies that have investigated these questions, focusing on those that have used the…
Descriptors: Age Differences, Prior Learning, Brain Hemisphere Functions, Memory
Katie R. Jobson – ProQuest LLC, 2024
Infancy is a period of significant change for both the brain and behavior. During the first two years of life, the brain experiences an explosion of synaptic connections and myelination, alongside rapid development in motor, linguistic, and social behavioral abilities. Understanding the relationship between brain development and behavioral…
Descriptors: Infants, Toddlers, Language Acquisition, Brain Hemisphere Functions
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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
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Serrien, Deborah J.; O'Regan, Louise – European Journal of Developmental Psychology, 2021
Fine motor skills develop in childhood. In this study, we evaluate motor planning in 6- to 11-year-old children using a pegboard and midline crossing task. The results of the pegboard task showed that children modified their strategies of hand use and space use as a function of age, albeit with a transition in the 8- to 9-year-old children. The…
Descriptors: Child Development, Motor Development, Psychomotor Skills, Brain Hemisphere Functions
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Phillips, Bernadette – Journal of Montessori Research, 2022
The Neurosequential Model in Education (NME) is described as a developmentally sensitive and biologically respectful approach to development and learning. This paper postulates that the NME shares many commonalities with the Montessori Method in that it, too, is developmentally sensitive and adheres to biologically respectful concepts. This paper…
Descriptors: Models, Montessori Method, Child Development, Developmental Stages
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Estrada, Eduardo; Ferrer, Emilio; Román, Francisco J.; Karama, Sherif; Colom, Roberto – Developmental Psychology, 2019
Throughout childhood and adolescence, humans experience marked changes in cortical structure and cognitive ability. Cortical thickness and surface area, in particular, have been associated with cognitive ability. Here we ask the question: What are the time-related associations between cognitive changes and cortical structure maturation.…
Descriptors: Child Development, Cognitive Development, Brain, Cognitive Ability
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Buss, Aaron T.; Spencer, John P. – Developmental Science, 2018
Executive function (EF) is a key cognitive process that emerges in early childhood and facilitates children's ability to control their own behavior. Individual differences in EF skills early in life are predictive of quality-of-life outcomes 30 years later (Moffitt et al., 2011). What changes in the brain give rise to this critical cognitive…
Descriptors: Executive Function, Cognitive Processes, Individual Differences, Cognitive Ability
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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
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Schwartz, Flora; Epinat-Duclos, Justine; Noveck, Ira; Prado, Jérôme – Developmental Science, 2018
Older interlocutors are more likely than younger ones to make pragmatic inferences, that is, inferences that go beyond the linguistically encoded meaning of a sentence. Here we ask whether pragmatic development is associated with increased activity in brain structures associated with inference-making or in those associated with Theory of Mind. We…
Descriptors: Neurological Organization, Brain, Inferences, Cognitive Structures
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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
Fagell, Phyllis L. – Phi Delta Kappan, 2019
Although the world is changing rapidly, young people's developmental trajectory has remained the same. Just as in the past, today's young adolescents with still-developing prefontal cortexes are malleable, impulsive, and impressionable. But Phyllis Fagell identifies three areas where today's tweens are different from those of the past. They are…
Descriptors: Preadolescents, Brain Hemisphere Functions, Developmental Stages, Information Technology
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Naumova, Oksana Yu.; Lee, Maria; Rychkov, Sergei Yu.; Vlasova, Natalia V.; Grigorenko, Elena L. – Child Development, 2013
Gene expression is one of the main molecular processes regulating the differentiation, development, and functioning of cells and tissues. In this review a handful of relevant terms and concepts are introduced and the most common techniques used in studies of gene expression/expression profiling (also referred to as studies of the transcriptome or…
Descriptors: Brain, Genetics, Brain Hemisphere Functions, Molecular Structure
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Turati, Chiara; Natale, Elena; Bolognini, Nadia; Senna, Irene; Picozzi, Marta; Longhi, Elena; Cassia, Viola Macchi – Developmental Science, 2013
In primates and adult humans direct understanding of others' action is provided by mirror mechanisms matching action observation and action execution (e.g. Casile, Caggiano & Ferrari, 2011). Despite the growing body of evidence detailing the existence of these mechanisms in the adult human brain, their origins and early development are…
Descriptors: Infants, Brain Hemisphere Functions, Diagnostic Tests, Motor Reactions
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