Investigating the impact of sex and reproductive aging on latent signatures of modifiable dementia risk factors
Mukora, A. W.; Costantino, M.; Parent, O.; Devenyi, G. A.; Chakravarty, M. M.
Show abstract
Treating modifiable risk factors for dementia may serve to prevent maladaptive brain aging. These include, and are not limited to, obesity, hypertension, and other metabolic disorders. Nearly two-thirds of affected individuals are female, and emerging research has pointed to potential sex-specific factors, like reproductive aging, as potent modifiers of dementia risk. Here, we leverage neuroimaging to characterize sex differences in the neural signatures of modifiable dementia risk factors, examining their relationship with brain anatomy, and integrate female-specific factors related to menopause history in a sex-specific analysis. Using cross-sectional data from the UK Biobank, we selected a cohort of 31,711 (age 44-82, 55.2% female/44.8% male) participants without diagnosed neurological conditions and collated behavioral data previously determined as modifiable risk factors. Using Partial Least Squares Analysis (PLS), we examined latent signatures that represent linear combinations that maximize covariance between patterns of brain (mean cortical thickness from 64 regions) and risk factor variables. To examine sex differences, we performed PLS analysis using the entire sample. We performed linear models to explore age-by-sex interactions with the PLS-derived brain scores and the risk factor pattern scores. To examine sex-specific relationships, we performed separate PLS analyses for the males and females and integrated menopause-related variables into the latter analysis. Our study found sex-dependent and menopause-dependent relationships between lifestyle risk factors and cortical thickness, highlighting stronger impacts of cardiometabolic factors on males and social and obesity-related factors on females in preserving brain health. The inclusion of menopause-related variables did not change the relationships to lifestyle risk factors, and strict age-matching dampened the strength of the findings. Our findings suggest that lifestyles and the female-specific endocrine environment influence sex differences in cortical anatomy during brain aging.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Women's brain aging: effects of sex-hormone exposure, pregnancies, and genetic risk for Alzheimer's disease 96%
- Cardiometabolic risk factors associated with brain age and accelerate brain ageing 96%
- Dissecting unique and common variance across body and brain health indicators using age prediction 95%
Similar papers in this journal
- Menopause status- and sex-related differences in age associations with spatial context memory and white matter microstructure at midlife 96%
- The Association Between Poor Sleep and Accelerated Brain Ageing 95%
- Subtypes of brain change in aging and their associations with cognition and Alzheimer's disease biomarkers 95%
Similar papers in this journal
- "Surviving and Thriving": Evidence for Cortical GABA Stabilization in Cognitively-Intact Oldest-Old Adults 94%
- MRI signature of brain age underlying post-traumatic stress disorder in World Trade Center responders 93%
- Contributing Factors to Advanced Brain Aging in Depression and Anxiety Disorders 93%
Similar papers in this journal
- Brain Aging in Major Depressive Disorder: Results from the ENIGMA Major Depressive Disorder working group 94%
- Three major dimensions of human brain cortical ageing in relation to cognitive decline across the 8th decade of life. 94%
- Associations between plasma proteins and psychological wellbeing: evidence from over 20 years of the English Longitudinal Study of Ageing 93%
"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.