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schizophrenia
Alterations in components of glutamatergic system and glutamate metabolizing enzymes are considered with reference to mental disorders such as senile dementia of Alzheimer's type and schizophrenia.
      
The molecular pathways for mental development, common forms of autisms, schizophrenia, and affective disorders have yet to be elucidated.
      
MicroRNA in schizophrenia: Genetic and expression analysis of miR-130b (22q11)
      
MiR-130b expressed in the brain and potentially targeting MECP2 is located in the susceptibility locus for schizophrenia (22q11).
      
Genetic association analysis of 300 schizophrenia and 316 normal control individuals revealed no statistically significant association of any of the miR-130b allelic variants with schizophrenia.
      
Circulating Immune Complexes in Blood of Patients with Positive Family History of Schizophrenia
      
Schizophrenia and autoantibodies against the regulatory peptide 5HT-modulin
      
A neuropsychological study of 59 families with schizophrenia (193 subjects: 59 patients, 109 parents, and 25 sibs) was conducted using the methods of A.R.
      
The control group included 23 healthy subjects without a familial history of schizophrenia.
      
The multidimensional neuropsychological indicators revealed may be used for further analysis of genetic risks of schizophrenia.
      
The interhemispheric interactions in perception of Russian prosody were studied in the norm and in schizophrenia as a clinical model of impaired hemispheric interactions.
      
Subcortical and limbic structures and P300 in schizophrenia
      
The results testify again to the role of changes in the left hemisphere in the pathogenesis of schizophrenia and pose the question of the structural and functional features of left frontosubcortical communications.
      
It was found that the proportion of anticipatory saccades is considerably higher than the normal value in schizophrenia.
      
It was assumed that the alterations found in schizophrenia result from the deficit of frontal cortical fields.
      
Variability of the EEG autocorrelation structure in adolescents with schizophrenia spectrum disorders
      
Quantitative analysis of changes in the autocorrelation structure of EEG short segments (in the range of several seconds) was performed in healthy adolescents (n = 39) and adolescents with schizophrenia spectrum disorders (n = 39).
      
It is suggested that psychopathology of the schizophrenia spectrum is accompanied by a break in the mutual determination of cortical neural networks with predominant localization of this process in the frontal areas of the brain cortex.
      
The relationships between the parameters of waves of auditory event-related potentials (ERPs) in the oddball paradigm and the volumes of the hippocampus, amygdala, and caudate nuclei were analyzed in healthy subjects and patients with schizophrenia.
      
The allele and genotype frequencies in patients with affective psychoses significantly differed from those in controls and in patients with schizophrenia.
      
 

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