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Journal of Nuclear Medicine

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Research ArticleLaboratory Studies

Carbon-11-FLB 457: A Radioligand for Extrastriatal D2 Dopamine Receptors

Christer Halldin, Lars Farde, Thomas Högberg, Nina Mohell, Håkan Hall, Tetsuya Suhara, Per Karlsson, Yoshifumi Nakashima and Carl-Gunnar Swahn
Journal of Nuclear Medicine July 1995, 36 (7) 1275-1281;
Christer Halldin
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Lars Farde
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Thomas Högberg
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Nina Mohell
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Håkan Hall
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Tetsuya Suhara
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Per Karlsson
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Yoshifumi Nakashima
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Carl-Gunnar Swahn
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Journal of Nuclear Medicine
Vol. 36, Issue 7
July 1, 1995
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Carbon-11-FLB 457: A Radioligand for Extrastriatal D2 Dopamine Receptors
Christer Halldin, Lars Farde, Thomas Högberg, Nina Mohell, Håkan Hall, Tetsuya Suhara, Per Karlsson, Yoshifumi Nakashima, Carl-Gunnar Swahn
Journal of Nuclear Medicine Jul 1995, 36 (7) 1275-1281;

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Carbon-11-FLB 457: A Radioligand for Extrastriatal D2 Dopamine Receptors
Christer Halldin, Lars Farde, Thomas Högberg, Nina Mohell, Håkan Hall, Tetsuya Suhara, Per Karlsson, Yoshifumi Nakashima, Carl-Gunnar Swahn
Journal of Nuclear Medicine Jul 1995, 36 (7) 1275-1281;
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Cited By...

  • Low convergent validity of [11C]raclopride binding in extrastriatal brain regions: a PET study of within-subject correlations with [11C]FLB 457
  • Reproducibility of the correlative triad among aging, dopamine receptor availability, and cognition
  • Selective D2 receptor PET in manganese-exposed workers
  • Evaluation of PET Brain Radioligands for Imaging Pancreatic {beta}-Cell Mass: Potential Utility of 11C-(+)-PHNO
  • Alterations in cortical and extrastriatal subcortical dopamine function in schizophrenia: systematic review and meta-analysis of imaging studies
  • Performance Evaluation of the Small-Animal nanoScan PET/MRI System
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  • A Biomathematical Modeling Approach to Central Nervous System Radioligand Discovery and Development
  • Differential Contributions of Prefrontal and Hippocampal Dopamine D1 and D2 Receptors in Human Cognitive Functions
  • Quantification of D2-Like Dopamine Receptors in the Human Brain with 18F-Desmethoxyfallypride
  • Extrastriatal dopamine D2 and D3 receptors in early and advanced Parkinson's disease
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