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Updated: Feb 8, 2026

Preterm EEG: A Multimodal Neurophysiological Protocol
Published on: February 18, 2012
Efficiency of structural connectivity networks relates to intrinsic motivation in children born extremely preterm
Leona Pascoe1,2, Deanne Thompson3,4, Megan Spencer-Smith5,3
1Monash Institute of Cognitive and Clinical Neurosciences, School of Psychological Sciences, Monash University, Clayton, VIC, Australia. leona.pascoe1@monash.edu.
Insights
Brain network efficiency and connectivity are linked to intrinsic motivation in preterm children. Enhanced information transfer and specific brain region connections support learning drive in this vulnerable group.
Area of Science:
- Neuroscience
- Developmental Psychology
- Cognitive Science
Background:
- Intrinsic motivation is crucial for academic success and cognitive development.
- Limited research exists on the neuroanatomical basis of intrinsic motivation, especially in early childhood.
- Understanding these underpinnings is vital for supporting vulnerable populations.
Purpose of the Study:
- To investigate the relationship between structural brain connectivity networks and intrinsic motivation in extremely preterm children.
- To explore global and local network properties associated with different facets of intrinsic motivation (Mastery, Challenge, Curiosity).
Main Methods:
- Graph theoretical analysis applied to structural connectivity networks derived from diffusion MRI.
- Analysis of 53 extremely preterm children (aged 7 years) using T1 and diffusion weighted imaging.
- Linear regression to associate network measures with self-reported intrinsic motivation.
Main Results:
- Greater information transfer across the network correlated with higher Mastery motivation.
- Increased network clustering and small-world topology were associated with greater Challenge motivation.
- Enhanced striatal efficiency and connectivity linked to overall intrinsic motivation.
Conclusions:
- Both integrated and segregated brain network communication support intrinsic motivation in early childhood.
- Specific structural network properties are important for intrinsic motivation in extremely preterm children.
- Findings offer insights into neurodevelopmental factors influencing learning motivation.
Abstract:
Intrinsic motivation is essential for academic success and cognitive growth, but limited work has examined the neuroanatomical underpinnings of intrinsic motivation from a network perspective, particularly in early childhood. Using graph theoretical analysis, this study investigated global and local properties of structural connectivity networks in relation to intrinsic motivation within a vulnerable group of children at early school age. Fifty-three 7 year-old children born extremely preterm (<28 weeks' gestational age)/extremely low birth weight (<1000 g) underwent T1 and diffusion weighted imaging. Structural connectivity networks were generated using 162 cortical and subcortical nodes, and edges were created using constrained spherical deconvolution-based tractography. Global and node-specific network measures were analyzed in association with self-reported aspects of intrinsic motivation for school learning (Mastery, Challenge and Curiosity) using linear regression. Results indicated that increased information transfer across the network was associated with greater Mastery, while increased clustering and small-world topology related to greater Challenge. Increased efficiency and connection strength of the striatum in particular, related to greater intrinsic motivation. These findings suggest that both integrated and segregated network communication support aspects of intrinsic motivation in childhood, and shed new light on structural network properties important for intrinsic motivation orientations in extremely preterm children at early school age.
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