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Genetic Contributions to Altered Callosal Morphology in Schizophrenia

  • Katherine L. Narr
  • , Tyrone D. Cannon
  • , Roger P. Woods
  • , Paul M. Thompson
  • , Sharon Kim
  • , Dina Asunction
  • , Theo G.M. Van Erp
  • , Veli Pekka Poutanen
  • , Matti Huttunen
  • , Jouko Lönnqvist
  • , Carl Gustav Standerksjöld-Nordenstam
  • , Jaakko Kaprio
  • , John C. Mazziotta
  • , Arthur W. Toga

Research output: Contribution to journalArticlepeer-review

82 Scopus citations

Abstract

Patients with schizophrenia exhibit abnormalities in midsagittal corpus callosum area, shape, and/or displacement. Our goal was to confirm these findings and to establish the genetic and nongenetic contributions to altered callosal morphology in schizophrenia. Relationships between ventricular enlargements potentially contributing to callosal displacements were assessed as a secondary goal. High-resolution magnetic resonance images were obtained from co-twins of monozygotic and dizygotic pairs discordant for schizophrenia and healthy control twins (N = 40 pairs). Investigators blind to group status segmented the corpus callosum and ventricles in native brain volumes aligned using a rigid-body transformation with no scaling. Total and parcellated midsagittal callosal areas and measures indexing vertical displacements of the corpus callosum were used in statistical tests to identify schizophrenia and sex effects and to dissociate genetic and nongenetic influences on morphology. Anatomical mesh modeling methods provided group average and surface variability maps of the callosum. Callosal areas did not differ between groups defined by sex or biological risk. Vertical displacements of the callosum, pronounced in male patients, were confirmed in schizophrenia and observed between dizygotic, but not monozygotic co-twins discordant for schizophrenia. Like their affected twins, however, unaffected monozygotic co-twins of the schizophrenia probands exhibited significant callosal displacements. Lateral and third ventricle enlargements were related to callosal displacements. Results clearly support that genetic rather than disease-specific or shared environmental influences contribute to altered callosal morphology in schizophrenia. An upward bowing of the callosum may thus provide an easily identifiable neuroanatomic marker to screen individuals possessing a biological vulnerability for schizophrenia.

Original languageEnglish
Pages (from-to)3720-3729
Number of pages10
JournalJournal of Neuroscience
Volume22
Issue number9
DOIs
StatePublished - 1 May 2002
Externally publishedYes

Keywords

  • Corpus callosum morphology
  • Dizygotic twins
  • Environmental effects
  • Genetic effects
  • Imaging
  • Monozygotic twins
  • Morphology
  • Schizophrenia

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