6533b7ddfe1ef96bd127543e

RESEARCH PRODUCT

Similar effect of family history of psychosis on Sylvian fissure size and auditory P200 amplitude in schizophrenic and bipolar subjects.

Concepción VilelaRafael Tabarés-seisdedosGabriel SelvaVicente Balanzá-martínezMiguel ValletManuel Gómez-beneytoYolanda PallardóJosé Salazar-fraileC. Leal

subject

AdultMalemedicine.medical_specialtyPsychosisBipolar I disorderBipolar DisorderAdolescentNeuroscience (miscellaneous)AudiologymedicineHumansRadiology Nuclear Medicine and imagingFamilyBipolar disorderFamily historyFirst-degree relativesLateral sulcusMiddle Agedmedicine.diseaseTemporal LobePsychiatry and Mental healthPsychotic DisordersSchizophreniaLateralityEvoked Potentials AuditorySchizophreniaFemalesense organsPsychologyTomography X-Ray ComputedNeuroscience

description

Several cerebral studies point to the non-specificity of structural and functional changes described in schizophrenia and bipolar disorders. Furthermore, the origin of these changes is still unclear. The present study investigated the effect of a family history (FH) of psychotic disorders in first-degree relatives on computed tomographic (CT) measures (ventricular, cerebral and Sylvian fissure size) and auditory event-related potentials (amplitudes and latencies of peak components in oddball paradigms) in 30 schizophrenic patients and 24 bipolar type I patients. We found a significant correlation between FH and the size of the right Sylvian fissure, and between FH and auditory P200 amplitude. More specifically, the schizophrenic and bipolar patients with negative FH (n=36) had larger right Sylvian fissures and smaller P200 amplitude than patients with positive FH (n=18). These findings were independent of the specific diagnosis, gender, and age of subjects. Our results suggest some underlying process common to schizophrenia and bipolar I disorder, and they provide support for the continuum view of the nosologic structure of psychotic illness.

10.1016/s0925-4927(01)00113-5https://pubmed.ncbi.nlm.nih.gov/11677065