EEG microstates are a candidate endophenotype for schizophrenia

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作者
Janir Ramos da Cruz
Ophélie Favrod
Maya Roinishvili
Eka Chkonia
Andreas Brand
Christine Mohr
Patrícia Figueiredo
Michael H. Herzog
机构
[1] École Polytechnique Fédérale de Lausanne (EPFL),Laboratory of Psychophysics, Brain Mind Institute
[2] Universidade de Lisboa,Institute for Systems and Robotics—Lisbon (LARSyS) and Department of Bioengineering, Instituto Superior Técnico
[3] Beritashvili Centre of Experimental Biomedicine,Laboratory of Vision Physiology
[4] Free University of Tbilisi,Institute of Cognitive Neurosciences
[5] Tbilisi State Medical University,Department of Psychiatry
[6] Institut de Psychologie,Faculté des Sciences Sociales et Politiques
[7] Bâtiment Geopolis,undefined
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摘要
Electroencephalogram microstates are recurrent scalp potential configurations that remain stable for around 90 ms. The dynamics of two of the four canonical classes of microstates, commonly labeled as C and D, have been suggested as a potential endophenotype for schizophrenia. For endophenotypes, unaffected relatives of patients must show abnormalities compared to controls. Here, we examined microstate dynamics in resting-state recordings of unaffected siblings of patients with schizophrenia, patients with schizophrenia, healthy controls, and patients with first episodes of psychosis (FEP). Patients with schizophrenia and their siblings showed increased presence of microstate class C and decreased presence of microstate class D compared to controls. No difference was found between FEP and chronic patients. Our findings suggest that the dynamics of microstate classes C and D are a candidate endophenotype for schizophrenia.
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