Precision fMRI reveals densely interdigitated network patches with conserved motifs in the lateral prefrontal cortex
Ladwig, Z.; Kermani, K. Z.; Dworetsky, A.; Labora, N.; Hernandez, J. J.; Dorn, M.; Smith, D. M.; Nee, D. E.; Braga, R. M.; Petersen, S. E.; Gratton, C.
Show abstract
Dominant models of human lateral prefrontal cortex (LPFC) organization emphasize broad domain-general zones and smooth functional gradients. However, these models rely heavily on group-averaged neuroimaging, which can obscure fine-scale cortical features - especially in highly inter-individually variable regions like the LPFC. To address this limitation, we collected a new precision fMRI dataset from 10 individuals, each with approximately 2 hours of resting-state and 6 hours of task data. We mapped individual-specific LPFC networks using resting-state fMRI and tested network-level functional preferences using task fMRI. We found that individual LPFC organization differed markedly from group-averaged estimates. Individual maps showed more fragmented and interdigitated networks - especially in anterior LPFC - including novel conserved motifs present across individuals. Task fMRI revealed that distinct but adjacent networks support domain-specific processes (i.e., language, social cognition, episodic projection) versus domain-general control. Sharp functional boundaries were visible at the individual level that could not be observed in group data. These findings uncover previously hidden organizational principles in the LPFC and offer a framework for understanding how the LPFC supports flexible, complex cognition through a finely organized architecture.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Basis of executive functions in fine-grained architecture of cortical and subcortical human brain networks 98%
- Extended frontal networks for visual and auditory working memory 98%
- A middle ground where executive control meets semantics: The neural substrates of semantic-control are topographically sandwiched between the multiple-demand and default-mode systems 97%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Prefrontal default-mode network interactions with posterior hippocampus during exploration 97%
- Hierarchical representation of multi-step tasks in multiple-demand and default mode networks 97%
- Dissociation of reliability, heritability, and predictivity in coarse- and fine-scale functional connectomes during development 97%
Similar papers in this journal
- Default mode network shows distinct emotional and contextual responses yet common effects of retrieval demands across tasks 98%
- The transition from vision to language:distinct patterns of functional connectivity for sub-regions of the visual word form area 97%
- Metastable neural dynamics underlies cognitive performance across multiple behavioural paradigms 97%
"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.