Spectral organization of individualized connectome harmonics across brain structure, function and cognition
Bolton, T.; Schottner Sieler, M.; Patel, J.; Chan, C. H. M.; Van De Ville, D.; Hagmann, P.
Show abstract
Connectome harmonics provide a spectral representation of structural brain connectivity that has emerged as a powerful framework for studying structure-function relationships. However, two fundamental questions remain unresolved: how should inter-individual variability in structural connectivity be incorporated into graph signal processing analyses, and at which spectral scale should connectome harmonics be interpreted? Here, using structural and functional MRI data from 875 participants, we show that subject-specific connectome harmonics reveal a reproducible hierarchical organization of the human connectome. Across the spectrum, harmonics exhibited orderly transitions in stability, graph support, sparsity and anatomical localization, and naturally organized into multiscale families sharing common structural properties. Sparse harmonic representations accurately reconstructed brain activity across resting-state and task paradigms, revealing frequency-dependent recruitment of this structural hierarchy during cognition. Finally, combining structural and functional harmonic organization enabled the prediction of individual cognitive performance, demonstrating that both representations capture complementary behaviorally relevant information. Together, our findings show that connectome harmonics should be viewed not simply as graph-frequency modes of structural connectivity, but as a hierarchically organized representation of the connectome that links brain structure, functional dynamics and cognition.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Precision dynamical mapping using topological data analysis reveals a unique hub-like transition state at rest 97%
- Evolutionarily conserved fMRI network dynamics in the mouse, macaque, and human brain 96%
- The ascending arousal system shapes low-dimensional brain dynamics to mediate awareness of changes in intrinsic cognitive states 96%
Similar papers in this journal
- The connectome spectrum as a canonical basis for a sparse representation of fast brain activity 97%
- Functional brain network community structure in childhood: Unfinished territories and fuzzy boundaries 96%
- Evaluating the sensitivity of functional connectivity measures to motion artifact in resting-state fMRI data 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.