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Identifying obesity and dementia risk: body adiposity and neural connectivity in cognitively normal, mid-life adults.


ABSTRACT: Obesity is a risk factor for dementia, creating a chronic inflammatory state that results in white matter (WM) injury. Edge density imaging (EDI) is a novel technique that has demonstrated reliability in quantifying WM changes. Thirty obese and 20 non-obese cognitively normal adults underwent structural and diffusion-weighted magnetic resonance imaging. Visceral adipose tissue (VAT) and subcutaneous adipose tissue (SAT) were quantified via VOXel Analysis Suite by separating signal intensities of adipose and non-adipose tissue. Scans were processed by a pipeline (MaPPeRTrac) to generate EDI. Among obese participants, there was a negative association between the VAT/SAT ratio and EDI, which was not seen among non-obese participants. Additionally, males had decreased EDI compared to females. The results of this study suggest that obesity, through WM damage, may confer increased risk of dementia, with sex as a potential differential factor. EDI demonstrates promise in delineating the neuropathology of obesity and dementia.

SUBMITTER: Chwa WJ 

PROVIDER: S-EPMC12440802 | biostudies-literature | 2025

REPOSITORIES: biostudies-literature

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Identifying obesity and dementia risk: body adiposity and neural connectivity in cognitively normal, mid-life adults.

Chwa Won Jong WJ   Rahmani Farzaneh F   Dolatshahi Mahsa M   Commean Paul K PK   Kassani Sara H SH   Cai Lanya T LT   Mukherjee Pratik P   Raji Cyrus A CA  

NPJ dementia 20250916 1


Obesity is a risk factor for dementia, creating a chronic inflammatory state that results in white matter (WM) injury. Edge density imaging (EDI) is a novel technique that has demonstrated reliability in quantifying WM changes. Thirty obese and 20 non-obese cognitively normal adults underwent structural and diffusion-weighted magnetic resonance imaging. Visceral adipose tissue (VAT) and subcutaneous adipose tissue (SAT) were quantified via VOXel Analysis Suite by separating signal intensities of  ...[more]

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