What have We Learned from Functional Imaging Studies in Schizophrenia? the Role of Frontal, Striatal and Temporal Areas
- 1 April 1996
- journal article
- review article
- Published by SAGE Publications in Australian & New Zealand Journal of Psychiatry
- Vol. 30 (2) , 195-209
- https://doi.org/10.3109/00048679609076095
Abstract
Objectives: Functional imaging technologies allow assessment of cerebral blood flow, cerebral metabolism, cellular metabolic processes, cerebral receptor density and occupancy. This review examines the contribution of such studies to our understanding of schizophrenia. The role of the frontal lobes, the basal ganglia, the temporal lobes and the neuronal circuits which connect them is examined with respect to this literature.Method: All studies in schizophrenia using positron emission tomography, single photon emission computerised tomography, xenon studies, functional and spectroscopic magnetic resonance imaging formed the basis of this review. Only those studies published in English were reviewed.Results: The most consistent finding in schizophrenia has been that of hypofrontality, while the results of studies examining subcortical structures provide preliminary support for the concept of fronto-striatal dysfunction. Functional imaging has not yet provided consistent results in the study of temporal lobe function. Although receptor studies have shed light on the actions of antipsychotic medications, the findings for dopamine receptor numbers remain controversial. Spectroscopic and functional MRI remain in their infancy as research tools in schizophrenia.Conclusions: Although there are significant methodological issues to be addressed, functional imaging technology is providing increasing insights into schizophrenia and its treatment. Future research will be truly multidisciplinary as it will require the collaboration of psychiatrists, imaging physicians, neuropsychologists and neuroscientists.Keywords
This publication has 99 references indexed in Scilit:
- Dopamine D2 receptor occupancy measured by single photon emission computed tomography with 123I-iodobenzamide in chronic schizophreniaPsychiatry Research: Neuroimaging, 1994
- D2 Dopamine Receptor Binding in the Basal Ganglia of Antipsychotic-Free Schizophrenic PatientsThe British Journal of Psychiatry, 1994
- Localization of brain function using magnetic resonance imagingTrends in Neurosciences, 1994
- The relevance to psychiatry of recent advances in functional imaging.Journal of Neurology, Neurosurgery & Psychiatry, 1992
- Patterns of Cerebral Blood Flow in SchizophreniaThe British Journal of Psychiatry, 1992
- Glucose Metabolic Rate in Normals and Schizophrenics During the Continuous Performance Test Assessed by Positron Emission TomographyThe British Journal of Psychiatry, 1990
- 31P nuclear magnetic resonance (NMR) spectroscope of the frontal lobe metabolism in neuroleptic naive first episode psychoses: preliminary studiesSchizophrenia Research, 1989
- Striatal dopamine receptor occupancy during and following withdrawal from neuroleptic treatment: correlative evaluation by positron emission tomography and plasma prolactin levelsPsychopharmacology, 1989
- Neurophysiological Aspects of Auditory HallucinationsPsychopathology, 1988
- Effect of lesion of cortical dopamine terminals on subcortical dopamine receptors in ratsNature, 1980