Brain mechanisms for reinforcement learning and adaptive decision-making are widely accepted to critically involve the basal ganglia (BG) and the neurotransmitter dopamine (DA). DA is a key modulator of synaptic plasticity within the striatum, critically regulating neurophysiological adaptations for normal reinforcement driven learning, and maladaptive changes during disease conditions (e.g. drug addiction, Parkinson’s disease). Activity in midbrain DA cells are reported to encode errors in reward prediction, providing a learning signal to guide future behaviors. Yet, dopamine is also a key modulatory of motivation, invigorating current behavior. Prevailing theories of DA emphasize its role in either affecting current performance, or modul...
Mesolimbic dopamine (DA) is phasically released during appetitive behaviors, though there is substan...
The effects of striatal dopamine (DA) on behavior have been widely investigated over the past decade...
Midbrain dopamine neurons are well known for their strong responses to rewards and their critical ro...
Brain mechanisms for reinforcement learning and adaptive decision-making are widely accepted to crit...
Thesis (Ph.D.) - Indiana University, Psychology, 2009The neuromodulatory neurotransmitter dopamine (...
Neuro-computational models allow to study the brain mechanisms involved in intelligent behavior and ...
Neuro-computational models allow to study the brain mechanisms involved in intelligent behavior and ...
The effects of striatal dopamine (DA) on behavior have been widely investigated over the past decade...
Much human behavior is driven by rewards. Preclinical neurophysiological and clinical positron emiss...
Being able identify decreases in resource availability and alter motivated behavior accordingly is e...
Neuroscience makes use of many metaphors in its attempt to explain the relationship between our bra...
The primary aim of the research I have undertaken is to better understand the influence of dopamine ...
AbstractThere is substantial evidence that dopamine is involved in reward learning and appetitive co...
Motivation is a process critical for the survival of organisms, directing and invigorating behavior....
Mesolimbic dopamine (DA) is phasically released during appetitive behaviors, though there is substan...
Mesolimbic dopamine (DA) is phasically released during appetitive behaviors, though there is substan...
The effects of striatal dopamine (DA) on behavior have been widely investigated over the past decade...
Midbrain dopamine neurons are well known for their strong responses to rewards and their critical ro...
Brain mechanisms for reinforcement learning and adaptive decision-making are widely accepted to crit...
Thesis (Ph.D.) - Indiana University, Psychology, 2009The neuromodulatory neurotransmitter dopamine (...
Neuro-computational models allow to study the brain mechanisms involved in intelligent behavior and ...
Neuro-computational models allow to study the brain mechanisms involved in intelligent behavior and ...
The effects of striatal dopamine (DA) on behavior have been widely investigated over the past decade...
Much human behavior is driven by rewards. Preclinical neurophysiological and clinical positron emiss...
Being able identify decreases in resource availability and alter motivated behavior accordingly is e...
Neuroscience makes use of many metaphors in its attempt to explain the relationship between our bra...
The primary aim of the research I have undertaken is to better understand the influence of dopamine ...
AbstractThere is substantial evidence that dopamine is involved in reward learning and appetitive co...
Motivation is a process critical for the survival of organisms, directing and invigorating behavior....
Mesolimbic dopamine (DA) is phasically released during appetitive behaviors, though there is substan...
Mesolimbic dopamine (DA) is phasically released during appetitive behaviors, though there is substan...
The effects of striatal dopamine (DA) on behavior have been widely investigated over the past decade...
Midbrain dopamine neurons are well known for their strong responses to rewards and their critical ro...