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Updated: Feb 28, 2026

A Comparative Approach for Quantitative Cell Counting Studies in Widely Different Mammalian Brains
Published on: January 16, 2026
Functional changes of precuneus architecture across newborns, infants, and early adolescents
Jiaojian Wang1,2, Qinmu Peng1,2, Minhui Ouyang1,2
1Department of Radiology, Children's Hospital of Philadelphia, Philadelphia, PA, 19104, USA.
Insights
This study reveals how the precuneus (PCun) region of the brain develops its connections from infancy to adolescence. It also shows PCun structural alterations in autism spectrum disorder (ASD).
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Brain Imaging
Background:
- The precuneus (PCun) is vital for spatial, visual-motor, and social cognition.
- Its functional connectivity development from birth to adolescence is largely unknown.
- Understanding PCun development is crucial for studying brain disorders.
Purpose of the Study:
- To investigate functional connectivity changes of PCun subregions during brain development (birth to adolescence).
- To examine PCun subregion alterations in autism spectrum disorder (ASD).
Main Methods:
- Multimodal cross-sectional diffusion MRI and resting-state fMRI were used.
- Subjects ranged from neonates to early adolescents, including those with ASD.
- PCun subregions were consistently identified using connectivity-based parcellation.
Main Results:
- Significant developmental changes were observed in PCun subregion functional connectivity with the default mode network (DMN) and cerebellum.
- PCun parcellation patterns were similar in ASD and typically developing individuals.
- A significant decrease in the dorsal-posterior PCun subregion volume was found in ASD subjects.
Conclusions:
- This study elucidates the functional developmental trajectories of PCun subregions and their associated networks.
- It highlights specific PCun subregion alterations in ASD, offering insights into the disorder's neurobiology.
- Findings contribute to understanding the evolving architecture of the precuneus during development and in ASD.
Abstract:
Brain functional development from birth to adolescence follows the cortical gradient from primary sensorimotor to higher-order association regions. Precuneus (PCun) is crucial in spatial cognition, visual-motor integration, and social cognition. However, functional connectivity changes of PCun subregions in this dynamic developmental period are not known. Multimodal cross-sectional diffusion MRI and resting-state fMRI of subjects from birth to early adolescence were acquired to obtain structural and functional connectivity. PCun in neonates, 1-year-olds, 2-year-olds, and early adolescent subjects were consistently parcellated into four subregions based on structural connectivity of PCun. Significant developmental changes were found in functional connectivity between the parcellated PCun subregions and default mode network (DMN), and between the parcellated PCun subregions and cerebellum network. To understand altered development of PCun in brain disorders, connectivity-based parcellation was performed in the subjects with autism spectrum disorder (ASD). Similar parcellation pattern of PCun was found, but the relative volume of the dorsal-posterior subregion significantly decreased in the subjects with ASD compared to typically developmental subjects. These findings revealed functional developmental patterns of PCun subregions in their connected networks in typical developing brains and revealed PCun subregion alteration in ASD, shedding light onto functional changes of PCun architecture during development.
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