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Okudzhava, L.* ; Schulz, S.* ; Fischi-Gomez, E.* ; Girard, G.* ; Machann, J. ; Koch, P.J.* ; Thiran, J.P.* ; Münte, T.F.* ; Heldmann, M.*

White adipose tissue distribution and amount are associated with increased white matter connectivity.

Hum. Brain Mapp. 45:e26654 (2024)
Publ. Version/Full Text DOI PMC
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Obesity represents a significant public health concern and is linked to various comorbidities and cognitive impairments. Previous research indicates that elevated body mass index (BMI) is associated with structural changes in white matter (WM). However, a deeper characterization of body composition is required, especially considering the links between abdominal obesity and metabolic dysfunction. This study aims to enhance our understanding of the relationship between obesity and WM connectivity by directly assessing the amount and distribution of fat tissue. Whole-body magnetic resonance imaging (MRI) was employed to evaluate total adipose tissue (TAT), visceral adipose tissue (VAT), and subcutaneous adipose tissue (SAT), while MR liver spectroscopy measured liver fat content in 63 normal-weight, overweight, and obese males. WM connectivity was quantified using microstructure-informed tractography. Connectome-based predictive modeling was used to predict body composition metrics based on WM connectomes. Our analysis revealed a positive dependency between BMI, TAT, SAT, and WM connectivity in brain regions involved in reward processing and appetite regulation, such as the insula, nucleus accumbens, and orbitofrontal cortex. Increased connectivity was also observed in cognitive control and inhibition networks, including the middle frontal gyrus and anterior cingulate cortex. No significant associations were found between WM connectivity and VAT or liver fat. Our findings suggest that altered neural communication between these brain regions may affect cognitive processes, emotional regulation, and reward perception in individuals with obesity, potentially contributing to weight gain. While our study did not identify a link between WM connectivity and VAT or liver fat, further investigation of the role of various fat depots and metabolic factors in brain networks is required to advance obesity prevention and treatment approaches.
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Publication type Article: Journal article
Document type Scientific Article
Keywords Adipose Tissue ; Connectome‐based Predictive Modeling ; Obesity ; Structural Connectivity; Body-mass Index; Diffusion Tensor; Brain Structure; Functional Connectivity; Obese Women; Reward; Integrity; Volume; Mri; Metaanalysis
Language english
Publication Year 2024
HGF-reported in Year 2024
ISSN (print) / ISBN 1065-9471
e-ISSN 1097-0193
Quellenangaben Volume: 45, Issue: 5, Pages: , Article Number: e26654 Supplement: ,
Publisher Wiley
Publishing Place 111 River St, Hoboken 07030-5774, Nj Usa
Reviewing status Peer reviewed
POF-Topic(s) 90000 - German Center for Diabetes Research
Research field(s) Helmholtz Diabetes Center
PSP Element(s) G-502400-001
Grants Deutsche Forschungsgemeinschaft
Scopus ID 85188536223
PubMed ID 38520361
Erfassungsdatum 2024-05-13