Effects of risk for bipolar disorder on brain function: A twin and family study

Genichi Sugihara, Fergus Kane, Marco M. Picchioni, Christopher A. Chaddock, Eugenia Kravariti, Sridevi Kalidindi, Fruhling Rijsdijk, Timothea Toulopoulou, Vivienne A. Curtis, Colm McDonald, Robin M. Murray, Philip McGuire

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

7 Citations (Scopus)

Abstract

Bipolar disorder (BPD) is associated with altered regional brain function during the performance of cognitive tasks. The relative contribution of genetic and environmental risk factors for BPD to these changes has not yet been quantified. We sought to address this issue in a functional neuroimaging study of people who varied in their risk for BPD. Functional magnetic resonance imaging was used to study 124 subjects (29 twin and 9 sibling pairs with at least one member with BPD, and 24 healthy twin pairs) performing a working memory task. We assessed the influence of risk for BPD on regional brain function during the task in a two stage process. Firstly, we identified areas where there were group differences in activation. Secondly, we estimated the heritability and phenotypic correlation of activation and BPD using genetic modeling. BPD was associated with increased activation in the anterior cingulate, orbitofrontal, medial prefrontal, and left precentral cortices, and in the precuneus. Within these regions, activation in the orbitofrontal cortex rendered the most significant heritability estimate (h2=0.40), and was significantly correlated with BPD phenotype (rph=0.29). A moderate proportion of the genetic influences (rg=0.69) acting on both BPD and on the degree of orbitofrontal activation were shared. These findings suggest that genetic factors that confer vulnerability to BPD alter brain function in BPD.

Original languageEnglish
Pages (from-to)494-503
Number of pages10
JournalEuropean Neuropsychopharmacology
Volume27
Issue number5
DOIs
Publication statusPublished - May 2017

Keywords

  • Bipolar disorder
  • Functional magnetic resonance imaging
  • Genetic modeling
  • Twin
  • Working memory

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