Hyperbolic graph embedding of MEG brain networks to study brain alterations in individuals with subjective cognitive decline.

Alzheimer’s disease brain networks graph embedding hyperbolic space magnetoencephalography subjective cognitive decline

Journal

bioRxiv : the preprint server for biology
Titre abrégé: bioRxiv
Pays: United States
ID NLM: 101680187

Informations de publication

Date de publication:
31 Oct 2023
Historique:
pubmed: 14 11 2023
medline: 14 11 2023
entrez: 14 11 2023
Statut: epublish

Résumé

An expansive area of research focuses on discerning patterns of alterations in functional brain networks from the early stages of Alzheimer's disease, even at the subjective cognitive decline (SCD) stage. Here, we developed a novel hyperbolic MEG brain network embedding framework for transforming high-dimensional complex MEG brain networks into lower-dimensional hyperbolic representations. Using this model, we computed hyperbolic embeddings of the MEG brain networks of two distinct participant groups: individuals with SCD and healthy controls. We demonstrated that these embeddings preserve both local and global geometric information, presenting reduced distortion compared to rival models, even when brain networks are mapped into low-dimensional spaces. In addition, our findings showed that the hyperbolic embeddings encompass unique SCD-related information that improves the discriminatory power above and beyond that of connectivity features alone. Notably, we introduced a unique metric-the radius of the node embeddings-which effectively proxies the hierarchical organization of the brain. Using this metric, we identified subtle hierarchy organizational differences between the two participant groups, suggesting increased hierarchy in the dorsal attention, frontoparietal, and ventral attention subnetworks among the SCD group. Last, we assessed the correlation between these hierarchical variations and cognitive assessment scores, revealing associations with diminished performance across multiple cognitive evaluations in the SCD group. Overall, this study presents the first evaluation of hyperbolic embeddings of MEG brain networks, offering novel insights into brain organization, cognitive decline, and potential diagnostic avenues of Alzheimer's disease.

Identifiants

pubmed: 37961615
doi: 10.1101/2023.10.23.563643
pmc: PMC10634754
pii:
doi:

Types de publication

Preprint

Langues

eng

Subventions

Organisme : NIA NIH HHS
ID : RF1 AG074204
Pays : United States
Organisme : NIA NIH HHS
ID : RF1 AG079324
Pays : United States

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Auteurs

Cole Baker (C)

McGovern Institute for Brain Research, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

Isabel Suárez-Méndez (I)

Department of Experimental Psychology, Complutense University of Madrid, Madrid 28040, Spain.

Elisabeth B Marsh (EB)

Department of Neurology, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

Michael Funke (M)

Department of Neurology, McGovern Medical School, UTHealth Houston, Houston, TX 77030, USA.

John C Mosher (JC)

Department of Neurology, McGovern Medical School, UTHealth Houston, Houston, TX 77030, USA.

Fernando Maestú (F)

Department of Experimental Psychology, Complutense University of Madrid, Madrid 28040, Spain.

Mengjia Xu (M)

McGovern Institute for Brain Research, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Department of Data Science, Ying Wu College of Computing, New Jersey Institute of Technology, Newark, NJ 07102, USA.

Dimitrios Pantazis (D)

McGovern Institute for Brain Research, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

Classifications MeSH