Dysconnection Topography in Schizophrenia Revealed with State-Space Analysis of EEG
Open Access
- 24 October 2007
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 2 (10) , e1059
- https://doi.org/10.1371/journal.pone.0001059
Abstract
The dysconnection hypothesis has been proposed to account for pathophysiological mechanisms underlying schizophrenia. Widespread structural changes suggesting abnormal connectivity in schizophrenia have been imaged. A functional counterpart of the structural maps would be the EEG synchronization maps. However, due to the limits of currently used bivariate methods, functional correlates of dysconnection are limited to the isolated measurements of synchronization between preselected pairs of EEG signals. To reveal a whole-head synchronization topography in schizophrenia, we applied a new method of multivariate synchronization analysis called S-estimator to the resting dense-array (128 channels) EEG obtained from 14 patients and 14 controls. This method determines synchronization from the embedding dimension in a state-space domain based on the theoretical consequence of the cooperative behavior of simultaneous time series—the shrinking of the state-space embedding dimension. The S-estimator imaging revealed a specific synchronization landscape in schizophrenia patients. Its main features included bilaterally increased synchronization over temporal brain regions and decreased synchronization over the postcentral/parietal region neighboring the midline. The synchronization topography was stable over the course of several months and correlated with the severity of schizophrenia symptoms. In particular, direct correlations linked positive, negative, and general psychopathological symptoms to the hyper-synchronized temporal clusters over both hemispheres. Along with these correlations, general psychopathological symptoms inversely correlated within the hypo-synchronized postcentral midline region. While being similar to the structural maps of cortical changes in schizophrenia, the S-maps go beyond the topography limits, demonstrating a novel aspect of the abnormalities of functional cooperation: namely, regionally reduced or enhanced connectivity. The new method of multivariate synchronization significantly boosts the potential of EEG as an imaging technique compatible with other imaging modalities. Its application to schizophrenia research shows that schizophrenia can be explained within the concept of neural dysconnection across and within large-scale brain networks.Keywords
This publication has 99 references indexed in Scilit:
- Dissociable contributions of MRI volume reductions of superior temporal and fusiform gyri to symptoms and neuropsychology in schizophreniaSchizophrenia Research, 2007
- Parietal lobe volume deficits in schizophrenia spectrum disordersSchizophrenia Research, 2007
- Source analysis of EEG oscillations using high-resolution EEG and MEGPublished by Elsevier ,2006
- Carmeli'sSindex assesses motion and muscle artefact reduction in rowers' electrocardiogramsPhysiological Measurement, 2006
- Reduced Intracortical Myelination in SchizophreniaAmerican Journal of Psychiatry, 2005
- Evidence for altered neuronal organisation within the planum temporale in major psychiatric disordersSchizophrenia Research, 2005
- The synchronization of chaotic systemsPhysics Reports, 2002
- Detecting Structural Changes in Whole Brain Based on Nonlinear Deformations—Application to Schizophrenia ResearchNeuroImage, 1999
- Association of brain structural change with the heterogeneous course of schizophrenia from early childhood through five years subsequent to a first hospitalizationPsychiatry Research: Neuroimaging, 1998
- EEG coherence, lateral preference and schizophreniaPsychological Medicine, 1983