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Nuclear Medicine and Biology|January 11, 2001
Carbon-11 pb-12: an attempt to visualize the dopamine d(4) receptor in the primate brain with positron emission tomographyO Langer, C Halldin, Y Chou, et al.Trends in Neurosciences|June 1, 1996
The advantage of using positron emission tomography in drug researchL FardeNuclear Medicine and Biology|September 3, 1999
Characterization of bromine-76-labelled 5-bromo-6-nitroquipazine for PET studies of the serotonin transporterC Lundkvist, C Loc'h, C Halldin, et al.Synapse (New York, N.Y.)|March 19, 2013
The dopamine D₁ receptor agonist (S)-[¹¹C]N-methyl-NNC 01-0259 is not sensitive to changes in dopamine concentration--a positron emission tomography examination in the monkey brainS J Finnema, B Bang-Andersen, M Jørgensen, et al.Nuclear Medicine and Biology|June 25, 1998
Toxicity, mutagenicity, and behavioral effects of beta-CIT, a ligand for dopamine transporter exploration by SPECTP Emond, L Farde, S Chalon, et al.Acta Neurologica Scandinavica|December 4, 2002
PET studies on the brain uptake and regional distribution of [11C]vinpocetine in human subjectsB Gulyás, C Halldin, J Sandell, et al.Schizophrenia Research|February 19, 1998
Brain imaging of schizophrenia--the dopamine hypothesisL FardeEuropean Radiology|May 2, 1998
Accumulation of FDG in axillary sweat glands in hyperhidrosis: a pitfall in whole-body PET examinationH Jacobsson, F Celsing, M Ingvar, et al.Pain|November 24, 1999
A PET activation study of dynamic mechanical allodynia in patients with mononeuropathyP Petrovic, M Ingvar, S Stone-Elander, et al.Neuroreport|September 1, 1990
Motor learning in man: a positron emission tomographic studyR J Seitz, E Roland, C Bohm, et al.Pageof 41