Theoretical accounts distinguish between motivational (‘wanting’) and hedonic (‘liking’) dimensions of rewards. Previous animal and human research linked wanting and liking to anatomically and neurochemically distinct brain mechanisms, but it remains unknown how the different brain regions and neurotransmitter systems interact in processing distinct reward dimensions. Here, we assessed how pharmacological manipulations of opioid and dopamine receptor activation modulate the neural processing of wanting and liking in humans in a randomized, placebo-controlled, double-blind clinical trial. Reducing opioid receptor activation with naltrexone selectively reduced wanting of rewards, which on a neural level was reflected by stronger coupling betw...
Two motivational processes affect choice between actions: (1) changes in the reward value of the goa...
The pedunculopontine tegmental nucleus (PPN) regulates the activity of dopaminergic cells in the ven...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...
Theoretical accounts distinguish between motivational (‘wanting’) and hedonic (‘liking’) dimensions ...
It has been hypothesized that the pleasure of a reward in humans is mediated by an opioidergic syste...
The endogenous μ-opioid receptor (MOR) system in the brain is central to reward behaviors across spe...
What role do brain dopamine and opioid systems play in the mediation of reward? Do these neurotransm...
The opioid system regulates affective processing, including pain, pleasure, and reward. Restricting ...
Increased responding to drug-associated stimuli (cue reactivity) and an inability to tolerate delaye...
The μ-opioid receptor system is central to reward and pain relief across species. In rodents, inject...
Reward processing is linked to specific neuromodulatory systems with a dopaminergic contribution to ...
Reward processing is linked to specific neuromodulatory systems with a dopaminergic contribution to ...
Studies of non-human animals have provided ample evidence that opioids are involved in reward proces...
Interactions between dopaminergic and opioidergic systems have been implicated in the reinforcing pr...
Research into the neural circuits that underlie the amplification of motivation has been focused on ...
Two motivational processes affect choice between actions: (1) changes in the reward value of the goa...
The pedunculopontine tegmental nucleus (PPN) regulates the activity of dopaminergic cells in the ven...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...
Theoretical accounts distinguish between motivational (‘wanting’) and hedonic (‘liking’) dimensions ...
It has been hypothesized that the pleasure of a reward in humans is mediated by an opioidergic syste...
The endogenous μ-opioid receptor (MOR) system in the brain is central to reward behaviors across spe...
What role do brain dopamine and opioid systems play in the mediation of reward? Do these neurotransm...
The opioid system regulates affective processing, including pain, pleasure, and reward. Restricting ...
Increased responding to drug-associated stimuli (cue reactivity) and an inability to tolerate delaye...
The μ-opioid receptor system is central to reward and pain relief across species. In rodents, inject...
Reward processing is linked to specific neuromodulatory systems with a dopaminergic contribution to ...
Reward processing is linked to specific neuromodulatory systems with a dopaminergic contribution to ...
Studies of non-human animals have provided ample evidence that opioids are involved in reward proces...
Interactions between dopaminergic and opioidergic systems have been implicated in the reinforcing pr...
Research into the neural circuits that underlie the amplification of motivation has been focused on ...
Two motivational processes affect choice between actions: (1) changes in the reward value of the goa...
The pedunculopontine tegmental nucleus (PPN) regulates the activity of dopaminergic cells in the ven...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...