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Cortical mapping of genotype-phenotype relationships in schizophrenia

  • Carrie E. Bearden
  • , Theo G.M. Van Erp
  • , Paul M. Thompson
  • , Arthur W. Toga
  • , Tyrone D. Cannon

Research output: Contribution to journalArticlepeer-review

23 Scopus citations

Abstract

Although schizophrenia is highly heritable, the search for susceptibility genes has been challenging. The "endophenotype" approach is an alternative method for measuring phenotypic variation that may make it easier to identify susceptibility genes in the context of complexly inherited traits. Neuroimaging methods in particular offer a powerful way to bridge the neurobiology of genes and behavior. Such investigations may be further empowered by complementary strategies involving chromosomal abnormalities associated with schizophrenia, which can help to localize causative genes and better understand the genetic complexity of the illness. Here, we illustrate our use of these convergent approaches, with a focus on neuroimaging studies using novel computational brain mapping algorithms, to investigate genetic influences on brain structure in the development of psychosis. These studies provide compelling evidence that specific genetic loci suspected to predispose to schizophrenia may affect quantitative variation in neural indicators underlying the neurobehavioral phenotype, and illustrate how genetic-neuroimaging paradigms can improve our understanding of the pathogenesis of this highly disabling mental illness.

Original languageEnglish
Pages (from-to)519-532
Number of pages14
JournalHuman Brain Mapping
Volume28
Issue number6
DOIs
StatePublished - Jun 2007
Externally publishedYes

Keywords

  • Brain mapping
  • Chromosome 22q11.2
  • DISC1
  • Genetic
  • Neuroanatomy
  • Psychosis
  • Twin study
  • Velocardiofacial syndrome

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