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Saglam, N.

Publications and source records attributed to Saglam, N..

2 recordsLinked to original sources

The cerebellum supports two systems for understanding others in early childhood

The cerebellum has increasingly been implicated in Theory of Mind (ToM), a hallmark of human social cognition. Yet its role in the development of social understanding remains poorly understood, despite evidence linking early cerebellar disruptions to profound social cognitive deficits. Although explicit ToM reasoning emerges only around four years of age, preverbal infants already excel at predicting others actions, raising the question of how the cerebellum supports social cognition early in development. Here, we investigated structural cerebellar correlates of ToM (explicit false belief understanding) and nonverbal action prediction in children aged 3-4 years, a critical developmental period during which explicit ToM emerges. Greater gray matter volume in Crus II, a core node of the adult cerebellar ToM network, was associated with better explicit ToM performance. By contrast, nonverbal action prediction was linked to distinct, non-overlapping clusters in inferior lobule VIIB and the posterior vermis, regions implicated in action observation and salience processing in adults. These cerebellar regions further exhibited dissociable patterns of covariance with cerebral networks, linking Crus II to the canonical ToM network and VIIB/vermal regions to salience-related areas. Our findings reveal neuroanatomically distinct cerebellar substrates supporting two separable components of early social cognition: one anchored to explicit mental-state reasoning and another to an earlier-emerging nonverbal action prediction system potentially grounded in the processing of salient social cues. Together, these findings identify the cerebellum as a key contributor to multiple stages of social cognitive development and suggest that distinct cerebellar systems scaffold the emergence of mature social understanding.

neuroscience↗

Cerebellar growth is associated with domain-specific cerebral maturation and socio-linguistic behavioral outcomes

The cerebellums involvement in cognitive functions is increasingly recognized, yet its developmental contribution to cognition remains poorly understood. The cerebellum undergoes rapid development in early life, paralleling major cognitive and behavioral changes. Although clinical studies have linked early cerebellar disruptions to profound developmental deficits, it remains largely unclear how typical cerebellar maturation supports the development of cognitive functions and how it interacts with broader brain development. Here, we apply a normative modeling framework to map cerebellar volumetric growth from infancy to young adulthood (N = 751; ages 1-21 years). Using lobular and functional cerebellar parcellations, we comprehensively characterize typical cerebellar development and examine how it aligns with cerebral development and behavioral outcomes. Across parcellations, posterior higher association areas consistently show steeper growth trajectories than anterior sensorimotor areas. Cerebellar and cerebral areas with similar functional roles demonstrate coordinated maturation, and volumetric growth in the posterior cerebellum relates to individual differences in socio-linguistic behaviors. These findings establish a comprehensive reference for typical cerebellar development, highlight cerebellar co-maturation with the cerebral cortex, and underscore the cerebellums role in supporting emerging higher cognitive functions.

neuroscience↗