Prefrontal dysfunction in young acute neuroleptic-naive schizophrenic patients: a resting and activation SPECT study. 1994

E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
Department of Psychiatry, University of Barcelona, Spain.

Regional cerebral blood flow (rCBF) was measured with single photon emission computed tomography (SPECT) in six neuroleptic-naive, young, acute schizophrenic patients and six normal control subjects. We evaluated rCBF changes in prefrontal areas at rest and during a prefrontal activation task, the Wisconsin Card Sorting Test (WCST). Schizophrenic patients had significantly higher prefrontal blood flow than did control subjects during the resting conditions. During activation, the control group showed significant increases in prefrontal blood flow, whereas the schizophrenic group did not. These results suggest that at rest there is no evidence of hypofrontality, whereas hyperfrontality seems to be the most frequent pattern in our selected sample of young acute neuroleptic-naive schizophrenic patients. Furthermore, schizophrenic patients seem to be unable to increase prefrontal blood flow under conditions that challenge the prefrontal cortex.

UI MeSH Term Description Entries
D011569 Psychiatric Status Rating Scales Standardized procedures utilizing rating scales or interview schedules carried out by health personnel for evaluating the degree of mental illness. Factor Construct Rating Scales (FCRS),Katz Adjustment Scales,Lorr's Inpatient Multidimensional Psychiatric Rating Scale,Wittenborn Scales,Edinburgh Postnatal Depression Scale,Mini International Neuropsychiatric Interview
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults
D012559 Schizophrenia A severe emotional disorder of psychotic depth characteristically marked by a retreat from reality with delusion formation, HALLUCINATIONS, emotional disharmony, and regressive behavior. Dementia Praecox,Schizophrenic Disorders,Disorder, Schizophrenic,Disorders, Schizophrenic,Schizophrenias,Schizophrenic Disorder
D015899 Tomography, Emission-Computed, Single-Photon A method of computed tomography that uses radionuclides which emit a single photon of a given energy. The camera is rotated 180 or 360 degrees around the patient to capture images at multiple positions along the arc. The computer is then used to reconstruct the transaxial, sagittal, and coronal images from the 3-dimensional distribution of radionuclides in the organ. The advantages of SPECT are that it can be used to observe biochemical and physiological processes as well as size and volume of the organ. The disadvantage is that, unlike positron-emission tomography where the positron-electron annihilation results in the emission of 2 photons at 180 degrees from each other, SPECT requires physical collimation to line up the photons, which results in the loss of many available photons and hence degrades the image. CAT Scan, Single-Photon Emission,CT Scan, Single-Photon Emission,Radionuclide Tomography, Single-Photon Emission-Computed,SPECT,Single-Photon Emission-Computed Tomography,Tomography, Single-Photon, Emission-Computed,Single-Photon Emission CT Scan,Single-Photon Emission Computer-Assisted Tomography,Single-Photon Emission Computerized Tomography,CAT Scan, Single Photon Emission,CT Scan, Single Photon Emission,Emission-Computed Tomography, Single-Photon,Radionuclide Tomography, Single Photon Emission Computed,Single Photon Emission CT Scan,Single Photon Emission Computed Tomography,Single Photon Emission Computer Assisted Tomography,Single Photon Emission Computerized Tomography,Tomography, Single-Photon Emission-Computed
D017397 Prefrontal Cortex The rostral part of the frontal lobe, bounded by the inferior precentral fissure in humans, which receives projection fibers from the MEDIODORSAL NUCLEUS OF THE THALAMUS. The prefrontal cortex receives afferent fibers from numerous structures of the DIENCEPHALON; MESENCEPHALON; and LIMBIC SYSTEM as well as cortical afferents of visual, auditory, and somatic origin. Anterior Prefrontal Cortex,Brodmann Area 10,Brodmann Area 11,Brodmann Area 12,Brodmann Area 47,Brodmann's Area 10,Brodmann's Area 11,Brodmann's Area 12,Brodmann's Area 47,Pars Orbitalis,Frontal Sulcus,Gyrus Frontalis Inferior,Gyrus Frontalis Superior,Gyrus Orbitalis,Gyrus Rectus,Inferior Frontal Gyrus,Lateral Orbitofrontal Cortex,Marginal Gyrus,Medial Frontal Gyrus,Olfactory Sulci,Orbital Area,Orbital Cortex,Orbital Gyri,Orbitofrontal Cortex,Orbitofrontal Gyri,Orbitofrontal Gyrus,Orbitofrontal Region,Rectal Gyrus,Rectus Gyrus,Straight Gyrus,Subcallosal Area,Superior Frontal Convolution,Superior Frontal Gyrus,Ventral Medial Prefrontal Cortex,Ventromedial Prefrontal Cortex,Anterior Prefrontal Cortices,Area 10, Brodmann,Area 10, Brodmann's,Area 11, Brodmann,Area 11, Brodmann's,Area 12, Brodmann,Area 12, Brodmann's,Area 47, Brodmann,Area 47, Brodmann's,Area, Orbital,Area, Subcallosal,Brodmanns Area 10,Brodmanns Area 11,Brodmanns Area 12,Brodmanns Area 47,Convolution, Superior Frontal,Convolutions, Superior Frontal,Cortex, Anterior Prefrontal,Cortex, Lateral Orbitofrontal,Cortex, Orbital,Cortex, Orbitofrontal,Cortex, Prefrontal,Cortex, Ventromedial Prefrontal,Cortices, Ventromedial Prefrontal,Frontal Convolution, Superior,Frontal Gyrus, Inferior,Frontal Gyrus, Medial,Frontal Gyrus, Superior,Frontalis Superior, Gyrus,Gyrus, Inferior Frontal,Gyrus, Marginal,Gyrus, Medial Frontal,Gyrus, Orbital,Gyrus, Orbitofrontal,Gyrus, Rectal,Gyrus, Rectus,Gyrus, Straight,Gyrus, Superior Frontal,Inferior, Gyrus Frontalis,Lateral Orbitofrontal Cortices,Olfactory Sulcus,Orbital Areas,Orbital Cortices,Orbital Gyrus,Orbitalis, Pars,Orbitofrontal Cortex, Lateral,Orbitofrontal Cortices,Orbitofrontal Cortices, Lateral,Orbitofrontal Regions,Prefrontal Cortex, Anterior,Prefrontal Cortex, Ventromedial,Prefrontal Cortices, Anterior,Region, Orbitofrontal,Subcallosal Areas,Sulcus, Frontal,Superior Frontal Convolutions,Superior, Gyrus Frontalis,Ventromedial Prefrontal Cortices

Related Publications

E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
September 1993, The American journal of psychiatry,
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
May 1997, Journal of abnormal psychology,
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
April 2004, Schizophrenia research,
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
October 1991, Psychiatry research,
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
October 1995, Lancet (London, England),
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
January 2001, European archives of psychiatry and clinical neuroscience,
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
February 1995, The American journal of psychiatry,
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
September 1996, Biological psychiatry,
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
January 1994, Biological psychiatry,
E Parellada, and A M Catafau, and M Bernardo, and F Lomeña, and E González-Monclús, and J Setoain
March 1990, Archives of general psychiatry,
Copied contents to your clipboard!