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February 12, 2026Imaging Neuroscience0 citationsOpen Access

Brain patterns linked to neuropsychiatric genetic risk mirror those seen in disease

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CCChun-Ju ChouERElisabetta Del ReHWHao Wang

Key Points

  • The research aims to explore how genetic risk scores correlate with brain structural changes across various neuropsychiatric disorders.
  • Analyzed MRI data and genetic information from 34,720 individuals in the UK Biobank.
  • Constructed genetic risk brain maps for 14 neuropsychiatric disorders.
  • Used brain maps from eight disorders from the ENIGMA consortium for comparison.
  • Conducted Mendelian randomization analyses to assess causal relationships between brain structures and disorders.
  • Identified alignment in brain patterns for ADHD, schizophrenia, bipolar disorder, and autism between genetic risk and clinical diagnoses.
  • Larger brain volumes associated with Parkinson's disease, while smaller sizes linked to ADHD and PTSD.
  • Unidirectional influence of brain structure on ADHD and Parkinson's, with bidirectional relationship for schizophrenia.
  • Individuals with high genetic risk and smaller brain structures showed higher likelihood of schizophrenia and bipolar disorder.

Abstract

Abstract Analyzing brain morphological changes across individuals with varying genetic risk scores may reveal patterns of brain alterations from health to disease. This study investigates grey matter structural alterations in individuals with clinical diagnoses compared to those with genetic risk alone. UK Biobank MRI and genotypes (N = 34,720) were used to derive brain measures and polygenic risk scores, creating genetic risk brain maps for 14 neuropsychiatric disorders. Eight disorders from ENIGMA were used to construct disease brain maps. Brain maps of genetic risk and clinical diagnosis show overall alignment for ADHD, schizophrenia, bipolar disorder, and autism. Other conditions, including Alzheimer’s disease, show specific brain regions linked to genetic risk aligning with established patient patterns. Incomplete data for some conditions limit analyses. ADHD and PTSD polygenic burden was associated with smaller global brain sizes, while Parkinson’s disease was linked to larger brain volume. Mendelian randomization analyses revealed unidirectional relationships where the brain influences ADHD and Parkinson’s disease, while a bidirectional causal association was observed for schizophrenia. Focusing on schizophrenia and bipolar disorder, we found that individuals with high genetic risk combined with smaller brain structures were more likely to have these diagnoses. Overall, the study demonstrates marked similarities in brain changes between clinical diagnoses and genetic risk for several disorders, albeit with mild effect sizes in the latter. These findings underscore the importance of genetic risk in influencing brain anatomy and the progression of neuropsychiatric disorders.

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Cite This Study

Chou et al. (2026) studied this question.

synapsesocial.com/papers/698d6dae5be6419ac0d52bd5https://doi.org/10.1162/imag.a.1152
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