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3-DIMENSIONAL PET-PET BRAIN IMAGE REGISTRATION AND ENHANCEMENT OF THE SIGNAL-NOISE RATIO IN FUNCTIONAL PATTERNS - ANALYSIS OF FUNCTIONAL PATTERN ENHANCEMENT DURING A MOTOR TASK [Meeting Abstract]

LEVY, AV; BERTOLLO, D; DHAWAN, A; ARATA, L; BARTLETT, E; RUSINEK, H; VOLKOW, N; BRODIE, JD
ISI:A1993LB13800151
ISSN: 0161-5505
CID: 73279

Effects of central cholinergic blockade on striatal dopamine release measured with positron emission tomography in normal human subjects

Dewey, S L; Smith, G S; Logan, J; Brodie, J D; Simkowitz, P; MacGregor, R R; Fowler, J S; Volkow, N D; Wolf, A P
Previously we demonstrated that positron emission tomography (PET) can be used to measure changes in the concentrations of synaptic dopamine and acetylcholine. Whether induced directly or indirectly through interactions with other neurotransmitters, these studies support the use of PET for investigating the functional responsiveness of a specific neurotransmitter to a pharmacologic challenge. In an extension of these findings to the human brain, PET studies designed to measure the responsiveness of striatal dopamine release to central cholinergic blockade were conducted in normal male volunteers using high-resolution PET and [11C]raclopride, a D2-dopamine receptor antagonist. [11C]Raclopride scans were performed prior to and 30 min after systemic administration of the potent muscarinic cholinergic antagonist, scopolamine (0.007 mg/kg). After scopolamine administration, [11C]raclopride binding decreased in the striatum (specific binding) but not in the cerebellum (nonspecific binding) resulting in a significant decrease, exceeding the test/retest variability of this ligand (5%), in the ratio of the distribution volumes of the striatum to the cerebellum (17%). Furthermore, scopolamine administration did not alter the systemic rate of [11C]raclopride metabolism or the metabolite-corrected plasma input function. These results are consistent not only with the known inhibitory influence that acetylcholine exerts on striatal dopamine release but also with our initial 18F-labeled N-methylspiroperidol and benztropine studies. Thus these data support the use of PET for measuring the functional responsiveness of an endogenous neurotransmitter to an indirect pharmacologic challenge in the living human brain
PMCID:48075
PMID: 8265632
ISSN: 0027-8424
CID: 76243

Negative symptoms and hypofrontality in chronic schizophrenia

Wolkin A; Sanfilipo M; Wolf AP; Angrist B; Brodie JD; Rotrosen J
Frontal lobe dysfunction is widely suspected to underlie negative symptoms of schizophrenia. This hypothesis is based largely on long-standing observations of the similarities between the effects of frontal lobe lesions and negative symptoms. However, there is little direct evidence specifically for such an association in schizophrenic patients. We measured the relationship between decreased relative prefrontal cortex glucose metabolism (hypofrontality) using positron emission tomography and evaluated the severity of negative symptoms in 20 chronic schizophrenics who underwent scanning while not receiving neuroleptic drugs. We found a close relationship between negative symptoms and prefrontal hypometabolism, particularly in the right dorsolateral convexity. This association was regionally specific. Furthermore, there was no evidence that this relationship was an artifact of age, cerebral atrophy, or severity of positive symptoms
PMID: 1360200
ISSN: 0003-990x
CID: 57503

Is [1-11C]putrescine useful as a brain tumor marker? [see comments] [Comment]

Hiesiger EM; Fowler JS; Logan J; Brodie JD; MacGregor RR; Christman DR; Wolf AP
Our experience with 11C-putrescine underscores the difficulty of finding a selective brain tumor tracer, uniquely incorporated by neoplastic glia or metastatic cells within brain, but not by the proliferating, nontransformed cells which constitute a normal pathophysiological reaction to various disease processes. Thirty-three patients with 36 lesions were studied with 11C-putrescine to determine the specificity of labeled putrescine for tumor tissue. The uptake of 11C-putrescine was correlated with local cerebral glucose metabolic rate in various lesions, including different types of tumors, to assess the relationship between 11C-putrescine uptake and tumor biology. Carbon-11-putrescine uptake was similar in malignant tumor and benign, non-neoplastic lesions with blood-brain barrier breakdown, illustrating the lack of tumor specificity of this tracer. Carbon-11-putrescine was not well incorporated into poorly enhancing lesions, regardless of their pathology, emphasizing the requirement of a disrupted blood-brain barrier for 11C-putrescine uptake. The ratio of 11C concentration within lesions, compared to that in a region of interest in the contralateral brain, weakly correlated with an analogous ratio for local cerebral glucose metabolic rate in various lesions. Physiological processes not unique to tumors are associated with polyamine active transport and metabolism and contribute to the lack of tumor specificity of 11C-putrescine. Carbon-11-putrescine appear to have less diagnostic utility than 18FDG in brain tumors. The potential of 11C-putrescine for evaluating the effect of antineoplastic therapy and providing prognostic information on brain tumors remains to be investigated
PMID: 1732439
ISSN: 0161-5505
CID: 13698

The value of "the putrescine experience" [Comment]

Fowler JS; Wolf AP; Volkow ND; Brodie JD; Hiesiger E
PMID: 1489409
ISSN: 0161-5505
CID: 61606

GABAergic inhibition of endogenous dopamine release measured in vivo with 11C-raclopride and positron emission tomography

Dewey, S L; Smith, G S; Logan, J; Brodie, J D; Yu, D W; Ferrieri, R A; King, P T; MacGregor, R R; Martin, T P; Wolf, A P
Extensive neuroanatomical, neurophysiological, and behavioral evidence demonstrates that GABAergic neurons inhibit endogenous dopamine release in the mammalian corpus striatum. Positron emission tomography (PET) studies in adult female baboons, using the dopamine D2-specific radiotracer 11C-raclopride, were undertaken to assess the utility of this imaging technique for measuring these dynamic interactions in vivo. 11C-raclopride binding was imaged prior to and following the administration of either gamma-vinyl-GABA (GVG), a specific suicide inhibitor of the GABA-catabolizing enzyme GABA transaminase, or lorazepam, a clinically prescribed benzodiazepine agonist. Striatal 11C-raclopride binding increased following both GVG and lorazepam administration. This increase exceeded the test/retest variability of 11C-raclopride binding observed in the same animals. These findings confirm that changes in endogenous dopamine concentrations resulting from drug-induced potentiation of GABAergic transmission can be measured with PET and 11C-raclopride. Finally, this new strategy for noninvasively evaluating the functional integrity of neurophysiologically linked transmitter systems with PET supports its use as an approach for assessing the multiple mechanisms of drug action and their consequences in the human brain
PMID: 1357114
ISSN: 0270-6474
CID: 67825

Low cerebellar metabolism in medicated patients with chronic schizophrenia

Volkow, N D; Levy, A; Brodie, J D; Wolf, A P; Cancro, R; Van Gelder, P; Henn, F
Because of the frequent association of cerebellar structural defects with schizophrenia, the authors reanalyzed the metabolic brain images of patients with chronic schizophrenia to assess if they had abnormalities in cerebellar metabolism. They used carbon-11-2-deoxyglucose and positron emission tomography to study 18 medicated patients with chronic schizophrenia and 12 normal comparison subjects. Patients with schizophrenia showed significantly lower absolute and relative metabolism in the cerebellum than normal subjects
PMID: 1575261
ISSN: 0002-953x
CID: 144613

Spatial low frequency pattern analysis in positron emission tomography: a study between normals and schizophrenics

Levy, A V; Gomez-Mont, F; Volkow, N D; Corona, J F; Brodie, J D; Cancro, R
Using the two-dimensional Fourier transform and the brain's centroidal principal axis, a method is developed for the analysis of PET metabolic brain images without the use of predefined anatomic regions of interest. We applied the method to images from a group of 11 normal and 12 medicated schizophrenics tested under resting conditions and under a visual task. A cortical/subcortical spatial pattern was found to be significant in two directions; anterior/posterior and chiasmatic (left-anterior/right-posterior). The best individual clinical classification (Jackknife classification) occurred under visual task at two axial brain levels: at the basal ganglia with correct classification rates of 91% and 84%, while the cerebellum had rates of 82% and 92%. These high classification rates were obtained using only the four coefficients of the lowest spatial frequency. These results point to the generalized brain dysfunction of regional glucose metabolism in chronic medicated schizophrenics both at rest and at a visual image-tracking task
PMID: 1732457
ISSN: 0161-5505
CID: 144614

Importance of pharmacologic control in PET studies: effects of thiothixene and haloperidol on cerebral glucose utilization in chronic schizophrenia

Bartlett EJ; Wolkin A; Brodie JD; Laska EM; Wolf AP; Sanfilipo M
This study compares the effects of two neuroleptic drugs with different pharmacologic characteristics (thiothixene and haloperidol) on cerebral glucose utilization in chronic schizophrenic inpatients. Positron emission tomographic (PET) scans were obtained from all subjects in a neuroleptic-free condition and again after 4-6 weeks of neuroleptic treatment. Eight subjects were treated with thiothixene and 12 with haloperidol. Thiothixene and haloperidol had different metabolic effects. For example, all thiothixene-treated subjects showed increased whole brain glucose utilization; all but one haloperidol-treated subject showed decreased utilization. Different patterns of relative prefrontal and striatal metabolism were also observed. These results highlight the importance of controlling for the effects of neuroleptic treatment and indicate the difficulty of interpreting data from studies with complex or poorly defined drug regimens
PMID: 1763142
ISSN: 0165-1781
CID: 13887

Stability of resting deoxyglucose metabolic values in PET studies of schizophrenia

Bartlett EJ; Barouche F; Brodie JD; Wolkin A; Angrist B; Rotrosen J; Wolf AP
Positron emission tomography (PET) and the deoxyglucose method were used to determine the test-retest stability of regional cerebral glucose metabolism in 8 male schizophrenic patients and 11 normal control subjects, scanned twice under baseline (resting) conditions. Normal and schizophrenic subjects showed comparable stability of regional metabolism. When the regional values were scaled to compensate for the effects of changes in whole brain metabolism, the resulting mean regional changes were reduced to about 1-2% in both groups. This study demonstrates that the baseline resting state is an appropriate reference state for schizophrenic subjects in deoxyglucose PET experiments
PMID: 1946838
ISSN: 0165-1781
CID: 14038