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Lars Farde

Showing results (51-60 of 218) with videos related to

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Nuclear Medicine and Biology|March 3, 2015
Development of rapid multistep carbon-11 radiosynthesis of the myeloperoxidase inhibitor AZD3241 to assess brain exposure by PET microdosingPeter Johnström, Linda Bergman, Katarina Varnäs, et al.
European Journal of Nuclear Medicine and Molecular Imaging|March 4, 2006
Quantitative analyses of regional [11C]PE2I binding to the dopamine transporter in the human brain: a PET studyAurelija Jucaite, Ikuo Odano, Hans Olsson, et al.
Neuroimage|May 10, 2011
Relationship of dopamine D1 receptor binding in striatal and extrastriatal regions to cognitive functioning in healthy humansSari Karlsson, Anna Rieckmann, Per Karlsson, et al.
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|December 15, 2011
Confirmation of fenfluramine effect on 5-HT(1B) receptor binding of [(11)C]AZ10419369 using an equilibrium approachSjoerd J Finnema, Andrea Varrone, Tzung-Jeng Hwang, et al.
European Journal of Nuclear Medicine and Molecular Imaging|May 14, 2009
Advancement in PET quantification using 3D-OP-OSEM point spread function reconstruction with the HRRTAndrea Varrone, Nils Sjöholm, Lars Eriksson, et al.
Neuropsychologia|June 16, 2009
Extrastriatal dopamine D2 receptor binding modulates intraindividual variability in episodic recognition and executive functioningStuart W S MacDonald, Simon Cervenka, Lars Farde, et al.
EJNMMI Research|June 28, 2015
Identification of positron emission tomography (PET) tracer candidates by prediction of the target-bound fraction in the brainMarkus Fridén, Marie Wennerberg, Madeleine Antonsson, et al.
Psychopharmacology|March 13, 2003
Positron emission tomographic analysis of dose-dependent NAD-299 binding to 5-hydroxytryptamine-1A receptors in the human brainBengt Andrée, Ann Hedman, Seth-Olav Thorberg, et al.
Neuroimage|November 7, 2012
Individual differences in the proneness to have flow experiences are linked to dopamine D2-receptor availability in the dorsal striatumÖrjan de Manzano, Simon Cervenka, Aurelija Jucaite, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 7, 2010
Dopamine D2 receptor density in the limbic striatum is related to implicit but not explicit movement sequence learningAnke Karabanov, Simon Cervenka, Orjan de Manzano, et al.
Pageof 22

Showing results (51-60 of 218) with videos related to

Sort By:
Pageof 22
Nuclear Medicine and Biology|March 3, 2015
Development of rapid multistep carbon-11 radiosynthesis of the myeloperoxidase inhibitor AZD3241 to assess brain exposure by PET microdosingPeter Johnström, Linda Bergman, Katarina Varnäs, et al.
European Journal of Nuclear Medicine and Molecular Imaging|March 4, 2006
Quantitative analyses of regional [11C]PE2I binding to the dopamine transporter in the human brain: a PET studyAurelija Jucaite, Ikuo Odano, Hans Olsson, et al.
Neuroimage|May 10, 2011
Relationship of dopamine D1 receptor binding in striatal and extrastriatal regions to cognitive functioning in healthy humansSari Karlsson, Anna Rieckmann, Per Karlsson, et al.
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|December 15, 2011
Confirmation of fenfluramine effect on 5-HT(1B) receptor binding of [(11)C]AZ10419369 using an equilibrium approachSjoerd J Finnema, Andrea Varrone, Tzung-Jeng Hwang, et al.
European Journal of Nuclear Medicine and Molecular Imaging|May 14, 2009
Advancement in PET quantification using 3D-OP-OSEM point spread function reconstruction with the HRRTAndrea Varrone, Nils Sjöholm, Lars Eriksson, et al.
Neuropsychologia|June 16, 2009
Extrastriatal dopamine D2 receptor binding modulates intraindividual variability in episodic recognition and executive functioningStuart W S MacDonald, Simon Cervenka, Lars Farde, et al.
EJNMMI Research|June 28, 2015
Identification of positron emission tomography (PET) tracer candidates by prediction of the target-bound fraction in the brainMarkus Fridén, Marie Wennerberg, Madeleine Antonsson, et al.
Psychopharmacology|March 13, 2003
Positron emission tomographic analysis of dose-dependent NAD-299 binding to 5-hydroxytryptamine-1A receptors in the human brainBengt Andrée, Ann Hedman, Seth-Olav Thorberg, et al.
Neuroimage|November 7, 2012
Individual differences in the proneness to have flow experiences are linked to dopamine D2-receptor availability in the dorsal striatumÖrjan de Manzano, Simon Cervenka, Aurelija Jucaite, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 7, 2010
Dopamine D2 receptor density in the limbic striatum is related to implicit but not explicit movement sequence learningAnke Karabanov, Simon Cervenka, Orjan de Manzano, et al.
Pageof 22