Relational integration demands are tracked by temporally delayed neural representations in alpha and beta rhythms within higher-order cortical networks
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Le résumé fourni par la source
Relational reasoning is the ability to infer and understand the relations between multiple elements. In humans, this ability supports higher cognitive functions and is linked to fluid intelligence. Relational complexity (RC) is a cognitive framework that offers a generalisable method for classifying the complexity of reasoning problems. To date, increased RC has been linked to static patterns of brain activity supported by the frontoparietal system, but limited work has assessed the multivariate spatiotemporal dynamics that code for RC. To address this, we conducted representational similarity analysis in two independent neuroimaging datasets (Dataset 1 fMRI, n=40; Dataset 2 EEG, n=45), where brain activity was recorded while participants completed a visuospatial reasoning task that included different levels of RC (Latin Square Task). Our findings revealed that, spatially, RC representations were widespread, peaking in brain networks associated with higher-order cognition (frontoparietal, dorsal-attention, and cingulo-opercular). Temporally, RC was represented in the 2.5 - 4.1 seconds post-stimuli window and emerged in the alpha and beta frequency range. Finally, multimodal fusion analysis demonstrated that shared variability within EEG-fMRI signals within higher-order cortical networks were better explained by the theorised RC model, relative to a model of cognitive effort (CE). Altogether, the results further our understanding of the neural representations supporting relational processing, highlight the spatially distributed coding of RC and CE across cortical networks, and emphasise the importance of late-stage, frequency-specific neural dynamics in resolving RC.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Relational integration demands are tracked by temporally delayed neural representations in alpha and beta rhythms within higher-order cortical networks
- Date Crossref
- 17/10/2024
- Éditeur
- openRxiv
- Type
- posted-content
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Où se fait cette recherche
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QIMR Berghofer Medical Research Institute pays non établi dans la noticeStructure de recherche
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IBM Research - Thomas J. Watson Research Center pays non établi dans la noticeStructure de recherche
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T.J. Watson Research Center pays non établi dans la noticeStructure de recherche
QIMR Berghofer Medical Research Institute, IBM Research - Thomas J. Watson Research Center et T.J. Watson Research Center.
Une affiliation ne permet pas de déduire la nationalité d’un auteur.