An exploratory causal analysis of the relationships between the brain age gap and cardiovascular risk factors

Pauline Mouches1,2,3, Matthias Wilms2,3,4, Jordan J Bannister1,2,3

  • 1Biomedical Engineering Program, University of Calgary, Calgary, AB, Canada.

Insights

Causal analysis reveals obesity markers, smoking, and alcohol impact brain age gap (BAG), indicating accelerated brain aging. Understanding these causal links is crucial for biomarker interpretation beyond correlations.

Area of Science:

  • Neuroscience
  • Biostatistics
  • Public Health

Background:

  • The brain age gap (BAG) reflects accelerated brain aging and may indicate neurological disease risk.
  • BAG also captures biological information linked to cardiovascular risk factors.
  • Previous studies focused on correlations, not causal relationships, between BAG and cardiovascular risks.

Purpose of the Study:

  • To employ causal structure discovery and Bayesian networks to model relationships between BAG and cardiovascular risk factors.
  • To assess conditional probabilities and isolate causal effects of risk factors on BAG.
  • To demonstrate the advantages of causal inference over correlational analyses in brain aging research.

Main Methods:

  • Utilized morphometric T1-weighted MRI brain features from 2025 adults.
  • Applied causal structure discovery techniques to build a Bayesian network.
  • Employed causal inference to determine the impact of cardiovascular risk factors on BAG.

Main Results:

  • Demonstrated the feasibility of causal analysis for BAG and cardiovascular risk factors.
  • Identified significant causal impacts of body-mass-index, waist-to-hip ratio, smoking, and alcohol on BAG.
  • Obesity markers showed the greatest impact, increasing the likelihood of accelerated brain aging.

Conclusions:

  • Causal effects of cardiovascular risk factors on BAG differ from correlational effects.
  • Accounting for relationships and confounders is vital for interpreting biomarker information.
  • Causal analysis offers advantages over purely correlational or univariate methods for brain aging studies.

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