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R C Munson

Publications and source records attributed to R C Munson.

6 recordsLinked to original sources

Basal ganglia pathology in schizophrenia and tardive dyskinesia: an MRI quantitative study.

Magnetic resonance imaging was used to measure the volumes of the caudate, putamen, and globus pallidus of 25 schizophrenic patients (17 men and eight women) and 26 age- and sex-matched comparison subjects (18 men and eight women). Schizophrenic patients had significantly larger right and left globus pallidus and right putamen volumes than comparison subjects. There were no significant differences between schizophrenic patients with and without persistent tardive dyskinesia in the volume of any of the three structures.

Adult↗

Effects of metabolic perturbation on plasma homovanillic acid in schizophrenia. Relationship to prefrontal cortex volume.

OBJECTIVE: Several recent hypotheses suggest that deficits in normal prefrontal cortical inhibition of subcortical dopamine activity result in dysregulated dopamine function and may contribute to the pathophysiology of schizophrenia. These effects seem to be more consistently demonstrable during stressful perturbation of the dopamine system, as opposed to during the resting state. We have developed a novel paradigm involving infusion of the glucose analog, 2-deoxyglucose (2DG), to examine the effects of perturbation on the dopamine metabolite, plasma homovanillic acid (HVA), in schizophrenics and healthy controls. DESIGN: Pharmacologic doses of 2DG (50 mg/kg) and placebo were infused in a double-blind manner. 2-Deoxyglucose-induced effects on plasma HVA were related to magnetic resonance imaging-derived prefrontal cortex volumes. SUBJECTS: Schizophrenic outpatients (N = 18) and healthy volunteers (N = 11) participated in the study. RESULTS: Schizophrenic patients, as compared with controls, had significantly greater 2DG-induced plasma HVA elevations. These effects were observed in subgroups of neuroleptic-free and neuroleptic-treated patients. Other neuroendocrine (plasma cortisol), physiologic (heart rate, diastolic blood pressure, temperature) and behavioral (self-ratings of stress, fatigue) variables were significantly effected by 2DG but did not differeniate schizophrenics and controls suggesting that the effects on plasma HVA may be relatively specific. Magnetic resonance imaging-derived volumes of the prefrontal cortex were significantly and inversely correlated to 2DG-related peak changes in plasma HVA levels in the schizophrenics. CONCLUSION: These data support the hypothesis that schizophrenia is associated with abnormal regulation of dopamine and that this deficit may be related to reduced frontal cortical inhibitory influences.

Adult↗

Structural abnormalities in deficit and nondeficit schizophrenia.

OBJECTIVE: Previous studies have suggested the involvement of the frontal and parietal cortices and thalamus in a neural circuit underlying the production of primary enduring negative or deficit symptoms of schizophrenia. The purpose of this study was to examine whether structural changes in the proposed circuit are associated with the production of deficit symptoms. METHOD: Magnetic resonance imaging was used to measure the volume of selected circuit brain regions (i.e., the prefrontal region and caudate) and noncircuit brain regions (i.e., the amygdala/hippocampus complex) in 17 deficit and 24 nondeficit schizophrenic outpatients and 30 normal comparison subjects. RESULTS: Right and left total prefrontal volumes discriminated deficit from nondeficit patients, with prefrontal volumes being smaller in nondeficit patients. There were no differences between the two schizophrenic subgroups in left caudate or right and left amygdala/hippocampus complex volumes. The right caudate was larger in deficit patients, but the difference between the two schizophrenic subgroups was not significant. There were no differences between deficit and normal subjects on any prefrontal region measure. Nondeficit patients had smaller total right and left prefrontal volumes than normal subjects. Both schizophrenic subgroups had larger left caudate volumes and smaller right and left amygdala/hippocampus complex volumes than the normal subjects. There was a trend for deficit patients to have larger right caudate volumes. CONCLUSIONS: These results suggest that structural changes in the prefrontal region are not responsible for deficit symptoms. The caudate, particularly the right caudate, may be associated with the production of these symptoms.

Frontal Lobe↗

Brain morphology and schizophrenia. A magnetic resonance imaging study of limbic, prefrontal cortex, and caudate structures.

We used magnetic resonance imaging to examine the morphologic characteristics of the amygdala/hippocampus, prefrontal cortex, and caudate nucleus in 29 healthy volunteers matched for age, gender, and head of household socioeconomic status and 44 patients with chronic schizophrenia. Total volumes of these structures were determined from 3-mm contiguous coronal sections. Schizophrenic patients, compared with healthy controls, had significantly smaller right and left amygdala/hippocampal complex volumes, smaller right and left prefrontal volumes, and larger left caudate volumes. A secondary analysis revealed reductions in the right and left amygdala and the left hippocampus. In addition, prefrontal white matter, but not gray matter, was reduced in the schizophrenic patients. Moreover, the right white matter volume in schizophrenic patients was significantly related to right amygdala/hippocampal volume (r = .39), data that provide preliminary support for a hypothesis of abnormal limbic-cortical connection in schizophrenia. We studied the implications of these data for the pathophysiology of schizophrenia.

Adult↗