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Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology
|
December 1, 1994
Distribution of D1- and D2-dopamine receptors, and dopamine and its metabolites in the human brain
H Hall, G Sedvall, O Magnusson, et al.
Brain : a Journal of Neurology
|
February 4, 1998
Cognitive deficits in Huntington's disease are predicted by dopaminergic PET markers and brain volumes
L Bäckman, T B Robins-Wahlin, A Lundin, et al.
Neurochemistry International
|
March 1, 1992
Imaging of dopamine receptors using PET and SPECT
H Hall, L Farde, C Halldin, et al.
Journal of Neural Transmission (Vienna, Austria : 1996)
|
April 2, 2004
Transcription factor AP-2beta genotype, striatal dopamine D2 receptor density and cerebrospinal fluid monoamine metabolite concentrations in humans
M Damberg, C Berggård, L Farde, et al.
Neurology
|
April 28, 2004
Limbic reductions of 5-HT1A receptor binding in human temporal lobe epilepsy
I Savic, P Lindström, B Gulyás, et al.
Neuroimage
|
March 21, 2016
Mapping the distribution of serotonin transporter in the human brainstem with high-resolution PET: Validation using postmortem autoradiography data
P Fazio, M Schain, K Varnäs, et al.
Acta Pharmaceutica Nordica
|
January 1, 1990
Syntheses of [123I]-, [125I]- and unlabelled (S)-3-iodo-5,6-dimethoxy-N-[(1-ethyl-2-pyrrolidinyl)methyl]salicylamide (NCQ 298), selective ligands for the study of dopamine D-2 receptors
T Högberg, P Ström, H Hall, et al.
Synapse (New York, N.Y.)
|
February 1, 1994
PET study of [11C]beta-CIT binding to monoamine transporters in the monkey and human brain
L Farde, C Halldin, L Müller, et al.
European Journal of Nuclear Medicine
|
January 1, 1990
Maps of receptor binding parameters in the human brain--a kinetic analysis of PET measurements
G Blomqvist, S Pauli, L Farde, et al.
Nuclear Medicine and Biology
|
July 1, 1997
Autoradiographic comparison of [125I]epidepride and [125I]NCQ 298 binding to human brain extrastriated dopamine receptors
H Hall, C Halldin, E Jerning, et al.
Page
of 21
Search research articles
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Showing results (91-100 of 207) with videos related to
Sort By:
Page
of 21
Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology
|
December 1, 1994
Distribution of D1- and D2-dopamine receptors, and dopamine and its metabolites in the human brain
H Hall, G Sedvall, O Magnusson, et al.
Brain : a Journal of Neurology
|
February 4, 1998
Cognitive deficits in Huntington's disease are predicted by dopaminergic PET markers and brain volumes
L Bäckman, T B Robins-Wahlin, A Lundin, et al.
Neurochemistry International
|
March 1, 1992
Imaging of dopamine receptors using PET and SPECT
H Hall, L Farde, C Halldin, et al.
Journal of Neural Transmission (Vienna, Austria : 1996)
|
April 2, 2004
Transcription factor AP-2beta genotype, striatal dopamine D2 receptor density and cerebrospinal fluid monoamine metabolite concentrations in humans
M Damberg, C Berggård, L Farde, et al.
Neurology
|
April 28, 2004
Limbic reductions of 5-HT1A receptor binding in human temporal lobe epilepsy
I Savic, P Lindström, B Gulyás, et al.
Neuroimage
|
March 21, 2016
Mapping the distribution of serotonin transporter in the human brainstem with high-resolution PET: Validation using postmortem autoradiography data
P Fazio, M Schain, K Varnäs, et al.
Acta Pharmaceutica Nordica
|
January 1, 1990
Syntheses of [123I]-, [125I]- and unlabelled (S)-3-iodo-5,6-dimethoxy-N-[(1-ethyl-2-pyrrolidinyl)methyl]salicylamide (NCQ 298), selective ligands for the study of dopamine D-2 receptors
T Högberg, P Ström, H Hall, et al.
Synapse (New York, N.Y.)
|
February 1, 1994
PET study of [11C]beta-CIT binding to monoamine transporters in the monkey and human brain
L Farde, C Halldin, L Müller, et al.
European Journal of Nuclear Medicine
|
January 1, 1990
Maps of receptor binding parameters in the human brain--a kinetic analysis of PET measurements
G Blomqvist, S Pauli, L Farde, et al.
Nuclear Medicine and Biology
|
July 1, 1997
Autoradiographic comparison of [125I]epidepride and [125I]NCQ 298 binding to human brain extrastriated dopamine receptors
H Hall, C Halldin, E Jerning, et al.
Page
of 21