Proton Magnetic Resonance Spectroscopy (1h-Mrs) Of Hippocampus, Basal Ganglia, And Vermis Of Cerebellum In Schizophrenia Associated With Idiopathic Unconjugated Hyperbilirubinemia (Gilbert'S Syndrome)

T Miyaoka,R Yasukawa,S Mizuno, T Sukegawa,T Inagaki,J Horiguchi, H Seno, K Oda, H Kitagaki

Journal of psychiatric research(2005)

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摘要
Objective: Whether patients with schizophrenia-associated idiopathic unconjugated hyperbilirubinemia (Gilbert's syndrome, GS) have specific changes in brain metabolism was examined in this study. Method: This study applied proton magnetic resonance spectroscopy (IH-MRS) to the hippocampus, basal ganglia, and vermis of the cerebellum of schizophrenic patients with GS (n = 15) or without GS (n = 15), all diagnosed according to DSM-IV criteria, and healthy subjects (n = 15). Results: In the hippocampus, schizophrenic patients with GS showed a significant decrease of N-acetyl aspartate/creatine-phosphocreatinine (NAA/Cr) and myoinositol/creatine-phosphocreatinine (ml/Cr) ratios compared to healthy subjects and schizophrenic patients without GS, while schizophrenic patients without GS showed only a significant decrease of NAA/Cr compared to healthy subjects. In the basal ganglia, schizophrenic patients with GS showed a significant decrease of ml/Cr compared to schizophrenic patients without GS and healthy subjects, and schizophrenic patients with GS showed a significant decrease of NAA/Cr compared to healthy subjects. In the vermis of the cerebellum, schizophrenic patients with GS showed only a significant decrease of ml/Cr compared to healthy subjects, although schizophrenic patients without GS did not show a significant decrease of ml/Cr compared to healthy subjects. Conclusion: The findings suggest that schizophrenia with GS is a more severe sub-type with regard to brain metabolism. (C) 2004 Elsevier Ltd. All rights reserved.
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schizophrenia,hyperbilirubinemia,Gilbert's syndrome,proton magnetic resonance spectroscopy (1H-MRS),hippocampus,basal ganglia,vermis of cerebellum
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