Journal Article PreJuSER-2994

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Mesolimbic Functional Magnetic Resonance Imaging Activations during Reward Anticipation Correlate with Reward-Related Ventral Striatal Dopamine Release

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2008
Soc. Washington, DC

The journal of neuroscience 28, 14311 - 14319 () [10.1523/JNEUROSCI.2058-08.2008]

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Abstract: The dopaminergic mechanisms that control reward-motivated behavior are the subject of intense study, but it is yet unclear how, in humans, neural activity in mesolimbic reward-circuitry and its functional neuroimaging correlates are related to dopamine release. To address this question, we obtained functional magnetic resonance imaging (fMRI) measures of reward-related neural activity and [(11)C]raclopride positron emission tomography measures of dopamine release in the same human participants, while they performed a delayed monetary incentive task. Across the cohort, a positive correlation emerged between neural activity of the substantia nigra/ventral tegmental area (SN/VTA), the main origin of dopaminergic neurotransmission, during reward anticipation and reward-related [(11)C]raclopride displacement as an index of dopamine release in the ventral striatum, major target of SN/VTA dopamine neurons. Neural activity in the ventral striatum/nucleus accumbens itself also correlated with ventral striatal dopamine release. Additionally, high-reward-related dopamine release was associated with increased activation of limbic structures, such as the amygdala and the hippocampus. The observed correlations of reward-related mesolimbic fMRI activation and dopamine release provide evidence that dopaminergic neurotransmission plays a quantitative role in human mesolimbic reward processing. Moreover, the combined neurochemical and hemodynamic imaging approach used here opens up new perspectives for the investigation of molecular mechanisms underlying human cognition.

Keyword(s): Adult (MeSH) ; Basal Ganglia: blood supply (MeSH) ; Basal Ganglia: metabolism (MeSH) ; Basal Ganglia: radionuclide imaging (MeSH) ; Brain Mapping (MeSH) ; Carbon Isotopes: metabolism (MeSH) ; Dopamine: metabolism (MeSH) ; Female (MeSH) ; Humans (MeSH) ; Image Processing, Computer-Assisted: methods (MeSH) ; Linear Models (MeSH) ; Magnetic Resonance Imaging (MeSH) ; Male (MeSH) ; Neural Pathways: anatomy & histology (MeSH) ; Neural Pathways: physiology (MeSH) ; Neural Pathways: radionuclide imaging (MeSH) ; Neuropsychological Tests (MeSH) ; Oxygen: blood (MeSH) ; Positron-Emission Tomography: methods (MeSH) ; Raclopride: metabolism (MeSH) ; Reaction Time: physiology (MeSH) ; Reward (MeSH) ; Young Adult (MeSH) ; Carbon Isotopes ; Oxygen ; Raclopride ; J ; dopamine (auto) ; fMRI (auto) ; reward (auto) ; midbrain (auto) ; substantia nigra (auto) ; nucleus accumbens (auto) ; neurotransmission (auto) ; receptor (auto)

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Note: This work was supported by the German Helmholtz Association (Virtual Institute VH-VI-125), the Deutsche Forschungsgemeinschaft (SFB 779, TP A8 and KFG 163, TP 3), the "Pakt fur Forschung und Innovation," and the State of Saxony-Anhalt. We gratefully acknowledge the excellent technical assistance of W. Roden and S. Stusgen (Institute of Nuclear Chemistry), M. Vogeling (Molecular Neuroimaging Group), K. Frey, L. Tellmann, E. Theelen, and H. Herzog (PET Instrumentation Group), B. Elghahwagi, P. Engels, G. Oefler, and C. Kemper (MRI Instrumentation Group, Research Center Julich), and Denise Gottert and Claus Tempelmann (Center of Advanced Imaging, University of Magdeburg).

Contributing Institute(s):
  1. Medizin (INB-3)
  2. Nuklearchemie (INB-4)
  3. Jülich-Aachen Research Alliance - Translational Brain Medicine (JARA-BRAIN)
Research Program(s):
  1. Funktion und Dysfunktion des Nervensystems (P33)

Appears in the scientific report 2008
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 Record created 2012-11-13, last modified 2020-04-23