Limited encoding of effort by dopamine neurons in a cost-benefit trade-off task.
about
Neuronal Reward and Decision Signals: From Theories to Data.Overlapping patterns of brain activation to food and cocaine cues in cocaine abusers: association to striatal D2/D3 receptorsDopamine neurons encode errors in predicting movement trigger occurrence.Roles of NMDA and dopamine in food-foraging decision-making strategies of rats in the social settingDopamine-associated cached values are not sufficient as the basis for action selectionOptimizing effort: increased efficiency of motor memory with time away from practiceAdaptive training with full-body movements to reduce bradykinesia in persons with Parkinson's disease: a pilot studyMovement-related discharge in the macaque globus pallidus during high-frequency stimulation of the subthalamic nucleusA biologically plausible computational theory for value integration and action selection in decisions with competing alternatives.Cognitive effort: A neuroeconomic approach.Dopamine enhances willingness to exert effort for reward in Parkinson's disease.Commentary: Noradrenaline and Dopamine Neurons in the Reward/Effort Trade-off: A Direct Electrophysiological Comparison in Behaving Monkeys.Dopamine Does Double Duty in Motivating Cognitive Effort.Effort-related motivational effects of the VMAT-2 inhibitor tetrabenazine: implications for animal models of the motivational symptoms of depression.Hitchhiker's Guide to Voltammetry: Acute and Chronic Electrodes for in Vivo Fast-Scan Cyclic Voltammetry.Phasic dopamine signals: from subjective reward value to formal economic utility.A selective role for ventromedial subthalamic nucleus in inhibitory control.Why not try harder? Computational approach to motivation deficits in neuro-psychiatric diseases.A transient dopamine signal encodes subjective value and causally influences demand in an economic context.A possible correlation between the basal ganglia motor function and the inverse kinematics calculation.Missing motoric manipulations: rethinking the imaging of the ventral striatum and dopamine in human reward.Reward and value coding by dopamine neurons in non-human primates.Dopamine prediction error responses update demand.Separate mesocortical and mesolimbic pathways encode effort and reward learning signals.Rapid prediction of biomechanical costs during action decisions.
P2860
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P2860
Limited encoding of effort by dopamine neurons in a cost-benefit trade-off task.
description
2013 nî lūn-bûn
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2013年の論文
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name
Limited encoding of effort by dopamine neurons in a cost-benefit trade-off task.
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type
label
Limited encoding of effort by dopamine neurons in a cost-benefit trade-off task.
@en
prefLabel
Limited encoding of effort by dopamine neurons in a cost-benefit trade-off task.
@en
P2860
P1476
Limited encoding of effort by dopamine neurons in a cost-benefit trade-off task
@en
P2093
Robert S Turner
P2860
P304
P356
10.1523/JNEUROSCI.4619-12.2013
P407
P577
2013-05-01T00:00:00Z