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Randomization and resilience of brain functional networks as systems-level endophenotypes of schizophrenia. | LitMetric

Randomization and resilience of brain functional networks as systems-level endophenotypes of schizophrenia.

Proc Natl Acad Sci U S A

Department of Psychiatry, Behavioural and Clinical Neurosciences Institute, University of Cambridge, Cambridge CB2 0SZ, United Kingdom; Cambridgeshire & Peterborough National Health Service (NHS) Foundation Trust, Cambridge CB21 5EF, United Kingdom; National Institute for Health Research Cambridge Biomedical Research Centre, Cambridge University Hospitals NHS Foundation Trust, Cambridge CB2 0QQ, United Kingdom; Immunopsychiatry, Alternative Discovery & Development, GlaxoSmithKline, Stevenage SG1 2NY, United Kingdom.

Published: July 2015

Schizophrenia is increasingly conceived as a disorder of brain network organization or dysconnectivity syndrome. Functional MRI (fMRI) networks in schizophrenia have been characterized by abnormally random topology. We tested the hypothesis that network randomization is an endophenotype of schizophrenia and therefore evident also in nonpsychotic relatives of patients. Head movement-corrected, resting-state fMRI data were acquired from 25 patients with schizophrenia, 25 first-degree relatives of patients, and 29 healthy volunteers. Graphs were used to model functional connectivity as a set of edges between regional nodes. We estimated the topological efficiency, clustering, degree distribution, resilience, and connection distance (in millimeters) of each functional network. The schizophrenic group demonstrated significant randomization of global network metrics (reduced clustering, greater efficiency), a shift in the degree distribution to a more homogeneous form (fewer hubs), a shift in the distance distribution (proportionally more long-distance edges), and greater resilience to targeted attack on network hubs. The networks of the relatives also demonstrated abnormal randomization and resilience compared with healthy volunteers, but they were typically less topologically abnormal than the patients' networks and did not have abnormal connection distances. We conclude that schizophrenia is associated with replicable and convergent evidence for functional network randomization, and a similar topological profile was evident also in nonpsychotic relatives, suggesting that this is a systems-level endophenotype or marker of familial risk. We speculate that the greater resilience of brain networks may confer some fitness advantages on nonpsychotic relatives that could explain persistence of this endophenotype in the population.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4517199PMC
http://dx.doi.org/10.1073/pnas.1502052112DOI Listing

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