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Neural specialization with generalizable representations underlies children’s cognitive development of attention

Bibliographic Data

ID8717822
AuthorsLei Hao (0009-0009-6977-119X), Hao Lei (0000-0003-3412-1241, corresponding author), Siya Peng, Ying Zhou (0000-0001-7335-5601), Minghao Yin (0000-0002-6226-2394), Xu Chen (0000-0002-8164-3088), Jiang Qiu (0000-0003-0269-5910), Wenbo Luo (0000-0001-8067-6681), Liping Zhuang, Jiahua Xu (0000-0003-3672-373X), Yanpei Wang (0000-0001-8135-2881), Haowen Su (0000-0001-8904-1391), Haoran Guan, Jing Luo (0000-0001-5193-3036), Shuping Tan (0000-0002-1265-5093), Jennifer H Gao (0000-0002-9311-0297), Jia-Hong Gao, Yong He (0000-0002-8303-9570), Tanya M Evans (0000-0002-5503-0245), Jin Fan (0000-0002-1043-1539), Jintu Fan (0000-0002-7130-0081), Sha Tao (0000-0002-0928-0681), Qi Dong (0000-0002-3502-9095), Shaozheng Qin (0000-0002-1859-2150)
Year2024
Volume80
Issue2
Pages148-164
Publication date2024-02-01
Peer ReviewedYes
Open AccessNo
TypeARTICLE
VenueAmerican Psychologist (JOURNAL)
Journal identifiersISSN: 0003-066X • E-ISSN: 1935-990X
PublisherAmerican Psychological Association (PUBLISHER • US)
DOI10.1037/amp0001283
PMID38300575
OpenAlexW4391433907
LanguageEN

From childhood to adulthood, the human brain develops highly specialized yet interacting neural modules that give rise to nuanced attention and other cognitive functions. Each module can specialize over development to support specific functions, yet also coexist in multiple neurobiological modes to support distinct processes. Advances in cognitive neuroscience have conceptualized human attention as a set of cognitive processes anchored in highly specialized yet interacting neural systems. The underlying mechanisms of how these systems interplay to support children's cognitive development of multiple attention processes remain unknown. Leveraging developmental functional magnetic resonance imaging with attention network test paradigm, we demonstrate differential neurocognitive development of three core attentional processes from childhood to adulthood, with alerting reaching adult-like level earlier, followed by orienting and executive attention with more protracted development throughout middle and late childhood. Relative to adults, young children exhibit immature specialization with less pronounced dissociation of neural systems specific to each attentional process. Children manifest adult-like distributed representations in the ventral attention and cingulo-opercular networks, but less stable and weaker generalizable representations across multiple processes in the dorsal attention network. Our findings provide insights into the functional specialization and generalization of neural representations scaffolding cognitive development of core attentional processes from childhood to adulthood. (PsycInfo Database Record (c) 2025 APA, all rights reserved)

Cognition · Cognitive development · Cognitive psychology · Default mode network · Developmental psychology · Dissociation (chemistry · Functional magnetic resonance imaging · Neurocognitive · Task-positive network · Cognitive Functions and Memory · Neural and Behavioral Psychology Studies · Neurobiology of Language and Bilingualism · Neuroscience · Psychology

Citation velocityhistorical
Highly citedNo
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